Scientist

Nils Landegren

ORCID 0000-0002-6163-9540

DiVA

Publications

2024 Journal of Clinical Investigation article-journal

Neutralizing IFN-γ autoantibodies are rare and pathogenic in HLA-DRB1*15:02 or 16:02 individuals

Jessica N. Peel, Rui Yang, Tom Le Voyer, Adrian Gervais, Jérémie Rosain, Paul Bastard, Anish Behere, Axel Cederholm, Aaron Bodansky, Yoann Seeleuthner, Clément Conil, Jing-Ya Ding, Wei-Te Lei, Lucy Bizien, Camille Soudee, Mélanie Migaud, Masato Ogishi, Ahmad Yatim, Danyel Lee, Jonathan Bohlen, Thomas Perpoint, Laura Perez, Fernando Messina, Roxana Genet, Ludovic Karkowski, Mathieu Blot, Emmanuel Lafont, Laurie Toullec, Claire Goulvestre, Souad Mehlal-Sedkaoui, Jérôme Sallette, Fernando Martin, Anne Puel, Emmanuelle Jouanguy, Mark S. Anderson, Nils Landegren, Pierre Tiberghien, Laurent Abel, Stéphanie Boisson-Dupuis, Jacinta Bustamante, Cheng-Lung Ku, Jean-Laurent Casanova

Abstract

BACKGROUND. Weakly virulent environmental mycobacteria (EM) can cause severe disease in HLA-DRB1*15:02 or 16:02 adults harboring neutralizing anti-IFN-γ autoantibodies (nAIGAs). The overall prevalence of nAIGAs in the general population is unknown, as are the penetrance of nAIGAs in HLA-DRB1*15:02 or 16:02 individuals and the proportion of patients with unexplained, adult-onset EM infections carrying nAIGAs.METHODS. This study analyzed the detection and neutralization of anti-IFN-γ autoantibodies (auto-Abs) from 8,430 healthy individuals of the general population, 257 HLA-DRB1*15:02 or 16:02 carriers, 1,063 patients with autoimmune disease, and 497 patients with unexplained severe disease due to EM.RESULTS. We found that anti-IFN-γ auto-Abs detected in 4,148 of 8,430 healthy individuals (49.2%) from the general population of an unknown HLA-DRB1 genotype were not neutralizing. Moreover, we did not find nAIGAs in 257 individuals carrying HLA-DRB1* 15:02 or 16:02. Additionally, nAIGAs were absent in 1,063 patients with an autoimmune disease. Finally, 7 of 497 patients (1.4%) with unexplained severe disease due to EM harbored nAIGAs.CONCLUSION. These findings suggest that nAIGAs are isolated and that their penetrance in HLA-DRB1*15:02 or 16:02 individuals is low, implying that they may be triggered by rare germline or somatic variants. In contrast, the risk of mycobacterial disease in patients with nAIGAs is high, confirming that these nAIGAs are the cause of EM disease.

2024 npj Vaccines article-journal

No link between type I interferon autoantibody positivity and adverse reactions to COVID-19 vaccines

Ahmet Yalcinkaya, Marco Cavalli, Axel Cederholm, Maribel Aranda-Guillen, Anish Behere, Hedvig Mildner, Tadepally Lakshmikanth, Laura Gonzalez, Constantin Habimana Mugabo, Anette Johnsson, Olov Ekwall, Olle Kampe, Sophie Bensing, Petter Brodin, Pär Hallberg, Mia Wadelius, Nils Landegren

Abstract

Type I interferons act as gatekeepers against viral infection, and autoantibodies that neutralize these signaling molecules have been associated with COVID-19 severity and adverse reactions to the live-attenuated yellow fever vaccine. On this background, we sought to examine whether autoantibodies against type I interferons were associated with adverse events following COVID-19 vaccination. Our nationwide analysis suggests that type I interferon autoantibodies were not associated with adverse events after mRNA or viral-vector COVID-19 vaccines.

2024 Science article-journal

The immunopathological landscape of human pre-TCRα deficiency : From rare to common variants

Marie Materna, Ottavia M. Delmonte, Marita Bosticardo, Mana Momenilandi, Peyton E. Conrey, Benedicte Charmeteau-De Muylder, Clotilde Bravetti, Rebecca Bellworthy, Axel Cederholm, Frederik Staels, Christian A. Ganoza, Samuel Darko, Samir Sayed, Corentin Le Floc'h, Masato Ogishi, Darawan Rinchai, Andrea Guenoun, Alexandre Bolze, Taushif Khan, Adrian Gervais, Renate Krueger, Mirjam Voeller, Boaz Palterer, Mahnaz Sadeghi-Shabestari, Anne Langlois de Septenville, Chaim A. Schramm, Sanjana Shah, John J. Tello-Cajiao, Francesca Pala, Kayla Amini, Jose S. Campos, Noemia Santana Lima, Daniel Eriksson, Romain Levy, Yoann Seeleuthner, Soma Jyonouchi, Manar Ata, Fatima Al Ali, Caroline Deswarte, Anais Pereira, Jerome Megret, Tom Le Voyer, Paul Bastard, Laureline Berteloot, Michael Dussiot, Natasha Vladikine, Paula P. Cardenas, Emmanuelle Jouanguy, Mashael Alqahtani, Amal Hasan, Thangavel Alphonse Thanaraj, Jeremie Rosain, Fahd Al Qureshah, Vito Sabato, Marie Alexandra Alyanakian, Marianne Leruez-Ville, Flore Rozenberg, Elie Haddad, Jose R. Regueiro, Maria L. Toribio, Judith R. Kelsen, Mansoor Salehi, Shahram Nasiri, Mehdi Torabizadeh, Hassan Rokni-Zadeh, Majid Changi-Ashtiani, Nasimeh Vatandoost, Hossein Moravej, Seyed Mohammad Akrami, Mohsen Mazloomrezaei, Aurelie Cobat, Isabelle Meyts, Etsushi Toyofuku, Madoka Nishimura, Kunihiko Moriya, Tomoyuki Mizukami, Kohsuke Imai, Laurent Abel, Bernard Malissen, Fahd Al-Mulla, Fowzan Sami Alkuraya, Nima Parvaneh, Horst von Bernuth, Christian Beetz, Frederic Davi, Daniel C. Douek, Remi Cheynier, David Langlais, Nils Landegren, Nico Marr, Tomohiro Morio, Mohammad Shahrooei, Rik Schrijvers, Sarah E. Henrickson, Herve Luche, Luigi D. Notarangelo, Jean-Laurent Casanova, Vivien Beziat

Abstract

We describe humans with rare biallelic loss-of-function PTCRA variants impairing pre-alpha T cell receptor (pre-TCR alpha) expression. Low circulating naive alpha beta T cell counts at birth persisted over time, with normal memory alpha beta and high gamma delta T cell counts. Their TCR alpha repertoire was biased, which suggests that noncanonical thymic differentiation pathways can rescue alpha beta T cell development. Only a minority of these individuals were sick, with infection, lymphoproliferation, and/or autoimmunity. We also report that 1 in 4000 individuals from the Middle East and South Asia are homozygous for a common hypomorphic PTCRA variant. They had normal circulating naive alpha beta T cell counts but high gamma delta T cell counts. Although residual pre-TCR alpha expression drove the differentiation of more alpha beta T cells, autoimmune conditions were more frequent in these patients compared with the general population.

2023 Nature article-journal

Autoantibodies against type I IFNs in humans with alternative NF-<sub>K</sub>B pathway deficiency

Tom Le Voyer, Audrey V. Parent, Xian Liu, Axel Cederholm, Adrian Gervais, Jeremie Rosain, Tina Nguyen, Malena Perez Lorenzo, Elze Rackaityte, Darawan Rinchai, Peng Zhang, Lucy Bizien, Gonca Hancioglu, Pascale Ghillani-Dalbin, Jean-Luc Charuel, Quentin Philippot, Mame Sokhna Gueye, Majistor Raj Luxman Maglorius Renkilaraj, Masato Ogishi, Camille Soudee, Melanie Migaud, Flore Rozenberg, Mana Momenilandi, Quentin Riller, Luisa Imberti, Ottavia M. Delmonte, Gabriele Mueller, Baerbel Keller, Julio Orrego, William Alexander Franco Gallego, Tamar Rubin, Melike Emiroglu, Nima Parvaneh, Daniel Eriksson, Maribel Aranda-Guillen, David I. Berrios, Linda Vong, Constance H. Katelaris, Peter Mustillo, Johannes Raedler, Jonathan Bohlen, Jale Bengi Celik, Camila Astudillo, Sarah Winter, Catriona McLean, Aurelien Guffroy, Joseph L. DeRisi, David Yu, Corey Miller, Yi Feng, Audrey Guichard, Vivien Beziat, Jacinta Bustamante, Qiang Pan-Hammarstrom, Yu Zhang, Lindsey B. Rosen, Steve M. Holland, Marita Bosticardo, Heather Kenney, Riccardo Castagnoli, Charlotte A. Slade, Kaan Boztug, Nizar Mahlaoui, Sylvain Latour, Roshini S. Abraham, Vassilios Lougaris, Fabian Hauck, Anna Sediva, Faranaz Atschekzei, Georgios Sogkas, M. Cecilia Poli, Mary A. Slatter, Boaz Palterer, Michael D. Keller, Alberto Pinzon-Charry, Anna Sullivan, Luke Droney, Daniel Suan, Melanie Wong, Alisa Kane, Hannah Hu, Cindy Ma, Hana Grombirikova, Peter Ciznar, Ilan Dalal, Nathalie Aladjidi, Miguel Hie, Estibaliz Lazaro, Jose Franco, Sevgi Keles, Marion Malphettes, Marlene Pasquet, Maria Elena Maccari, Andrea Meinhardt, Aydan Ikinciogullari, Mohammad Shahrooei, Fatih Celmeli, Patrick Frosk, Christopher C. Goodnow, Paul E. Gray, Alexandre Belot, Hye Sun Kuehn, Sergio D. Rosenzweig, Makoto Miyara, Francesco Licciardi, Amelie Servettaz, Vincent Barlogis, Guillaume Le Guenno, Vera-Maria Herrmann, Taco Kuijpers, Gregoire Ducoux, Francoise Sarrot-Reynauld, Catharina Schuetz, Charlotte Cunningham-Rundles, Frederic Rieux-Laucat, Stuart G. Tangye, Cristina Sobacchi, Rainer Doffinger, Klaus Warnatz, Bodo Grimbacher, Claire Fieschi, Laureline Berteloot, Vanessa L. Bryant, Sophie Trouillet Assant, Helen Su, Benedicte Neven, Laurent Abel, Qian Zhang, Bertrand Boisson, Aurelie Cobat, Emmanuelle Jouanguy, Olle Kampe, Paul Bastard, Chaim M. Roifman, Nils Landegren, Luigi D. Notarangelo, Mark S. Anderson, Jean-Laurent Casanova, Anne Puel

Abstract

Patients with autoimmune polyendocrinopathy syndrome type 1 (APS-1) caused by autosomal recessive AIRE deficiency produce autoantibodies that neutralize type I interferons (IFNs)1,2, conferring a predisposition to life-threatening COVID-19 pneumonia3. Here we report that patients with autosomal recessive NIK or RELB deficiency, or a specific type of autosomal-dominant NF-κB2 deficiency, also have neutralizing autoantibodies against type I IFNs and are at higher risk of getting life-threatening COVID-19 pneumonia. In patients with autosomal-dominant NF-κB2 deficiency, these autoantibodies are found only in individuals who are heterozygous for variants associated with both transcription (p52 activity) loss of function (LOF) due to impaired p100 processing to generate p52, and regulatory (IκBδ activity) gain of function (GOF) due to the accumulation of unprocessed p100, therefore increasing the inhibitory activity of IκBδ (hereafter, p52LOF/IκBδGOF). By contrast, neutralizing autoantibodies against type I IFNs are not found in individuals who are heterozygous for NFKB2 variants causing haploinsufficiency of p100 and p52 (hereafter, p52LOF/IκBδLOF) or gain-of-function of p52 (hereafter, p52GOF/IκBδLOF). In contrast to patients with APS-1, patients with disorders of NIK, RELB or NF-κB2 have very few tissue-specific autoantibodies. However, their thymuses have an abnormal structure, with few AIRE-expressing medullary thymic epithelial cells. Human inborn errors of the alternative NF-κB pathway impair the development of AIRE-expressing medullary thymic epithelial cells, thereby underlying the production of autoantibodies against type I IFNs and predisposition to viral diseases.

2023 European Journal of Endocrinology article-journal

Relation between HLA and copy number variation of steroid 21-hydroxylase in a Swedish cohort of patients with autoimmune Addison's disease

Christian Lundtoft, Daniel Eriksson, Matteo Bianchi, Maribel Aranda-Guillen, Nils Landegren, Solbritt Rantapää-Dahlqvist, Peter Söderkvist, Jennifer Meadows, D I S S E C T Consortium, Immunoarray Consortium, Swedish Addison Registry Study Grp, Sophie Bensing, Gerli Rosengren Pielberg, Kerstin Lindblad-Toh, Lars Rönnblom, Olle Kämpe

Abstract

Objective Autoantibodies against the adrenal enzyme 21-hydroxylase is a hallmark manifestation in autoimmune Addison's disease (AAD). Steroid 21-hydroxylase is encoded by CYP21A2, which is located in the human leucocyte antigen (HLA) region together with the highly similar pseudogene CYP21A1P. A high level of copy number variation is seen for the 2 genes, and therefore, we asked whether genetic variation of the CYP21 genes is associated with AAD.Design Case-control study on patients with AAD and healthy controls.Methods Using next-generation DNA sequencing, we estimated the copy number of CYP21A2 and CYP21A1P, together with HLA alleles, in 479 Swedish patients with AAD and autoantibodies against 21-hydroxylase and in 1393 healthy controls.Results With 95% of individuals carrying 2 functional 21-hydroxylase genes, no difference in CYP21A2 copy number was found when comparing patients and controls. In contrast, we discovered a lower copy number of the pseudogene CYP21A1P among AAD patients (P = 5 x 10(-44)), together with associations of additional nucleotide variants, in the CYP21 region. However, the strongest association was found for HLA-DQB1*02:01 (P = 9 x 10(-63)), which, in combination with the DRB1*04:04-DQB1*03:02 haplotype, imposed the greatest risk of AAD.Conclusions We identified strong associations between copy number variants in the CYP21 region and risk of AAD, although these associations most likely are due to linkage disequilibrium with disease-associated HLA class II alleles.

2022 Autoimmunity Reviews review

Autoantibodies and SARS-CoV2 infection : The spectrum from association to clinical implication. Report of the 15th Dresden Symposium on Autoantibodies

Jan Damoiseaux, Arad Dotan, Marvin J. Fritzler, Dimitrios P. Bogdanos, Pier Luigi Meroni, Dirk Roggenbuck, Michel Goldman, Nils Landegren, Paul Bastard, Yehuda Shoenfeld, Karsten Conrad

Abstract

The relation between infections and autoimmune diseases has been extensively investigated. Multiple studies suggest a causal relation between these two entities with molecular mimicry, hyperstimulation and dysregulation of the immune system as plausible mechanisms. The recent pandemic with a new virus, i.e., SARS-CoV-2, has resulted in numerous studies addressing the potential of this virus to induce autoimmunity and, eventually, autoimmune disease. In addition, it has also revealed that pre-existing auto-immunity (auto-Abs neutralizing type I IFNs) could cause life-threatening disease. Therefore, the topic of the 15th Dresden Symposium on Autoantibodies was focused on autoimmunity in the SARS-CoV-2 era. This report is a collection and distillation of the topics presented at this meeting.

2022 eLIFE article-journal

Autoantibody discovery across monogenic, acquired, and COVID-19-associated autoimmunity with scalable PhIP-seq

Sara E. Vazquez, Sabrina A. Mann, Aaron Bodansky, Andrew F. Kung, Zoe Quandt, Elise M. N. Ferre, Nils Landegren, Daniel Eriksson, Paul Bastard, Shen-Ying Zhang, Jamin Liu, Anthea Mitchell, Irina Proekt, David Yu, Caleigh Mandel-Brehm, Chung-Yu Wang, Brenda Miao, Gavin Sowa, Kelsey Zorn, Alice Y. Chan, Veronica M. Tagi, Chisato Shimizu, Adriana Tremoulet, Kara Lynch, Michael R. Wilson, Olle Kaempe, Kerry Dobbs, Ottavia M. Delmonte, Rosa Bacchetta, Luigi D. Notarangelo, Jane C. Burns, Jean-Laurent Casanova, Michail S. Lionakis, Troy R. Torgerson, Mark S. Anderson, Joseph L. DeRisi

Abstract

Phage immunoprecipitation sequencing (PhIP-seq) allows for unbiased, proteome-wide autoantibody discovery across a variety of disease settings, with identification of disease-specific autoantigens providing new insight into previously poorly understood forms of immune dysregulation. Despite several successful implementations of PhIP-seq for autoantigen discovery, including our previous work (Vazquez et al., 2020), current protocols are inherently difficult to scale to accommodate large cohorts of cases and importantly, healthy controls. Here, we develop and validate a high throughput extension of PhIP-seq in various etiologies of autoimmune and inflammatory diseases, including APS1, IPEX, RAG1/2 deficiency, Kawasaki disease (KD), multisystem inflammatory syndrome in children (MIS-C), and finally, mild and severe forms of COVID-19. We demonstrate that these scaled datasets enable machine-learning approaches that result in robust prediction of disease status, as well as the ability to detect both known and novel autoantigens, such as prodynorphin (PDYN) in APS1 patients, and intestinally expressed proteins BEST4 and BTNL8 in IPEX patients. Remarkably, BEST4 antibodies were also found in two patients with RAG1/2 deficiency, one of whom had very early onset IBD. Scaled PhIP-seq examination of both MIS-C and KD demonstrated rare, overlapping antigens, including CGNL1, as well as several strongly enriched putative pneumonia-associated antigens in severe COVID-19, including the endosomal protein EEA1. Together, scaled PhIP-seq provides a valuable tool for broadly assessing both rare and common autoantigen overlap between autoimmune diseases of varying origins and etiologies.

2022 Journal of Allergy and Clinical Immunology article-journal

Genetic and immunologic evaluation of children with inborn errors of immunity and severe or critical COVID-19

Hassan Abolhassani, Samaneh Delavari, Nils Landegren, Sima Shokri, Paul Bastard, Likun Du, Fanglei Zuo, Reza Hajebi, Farhad Abolnezhadian, Sara Iranparast, Mohammadreza Modaresi, Ahmad Vosughimotlagh, Fereshte Salami, Maribel Aranda-Guillen, Aurelie Cobat, Harold Marcotte, Shen-Ying Zhang, Qian Zhang, Nima Rezaei, Jean-Laurent Casanova, Olle Kämpe, Lennart Hammarström, Qiang Pan-Hammarström

Abstract

Background: Most severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)-infected individuals are asymptomatic or only exhibit mild disease. In about 10% of cases, the infection leads to hypoxemic pneumonia, although it is much more rare in children. Objective: We evaluated 31 young patients aged 0.5 to 19 years who had preexisting inborn errors of immunity (IEI) but lacked a molecular diagnosis and were later diagnosed with coronavirus disease 2019 (COVID-19) complications. Methods: Genetic evaluation by whole-exome sequencing was performed in all patients. SARS-CoV-2-specific antibodies, autoantibodies against type I IFN (IFN-I), and inflammatory factors in plasma were measured. We also reviewed COVID-19 disease severity/outcome in reported IEI patients. Results: A potential genetic cause of the IEI was identified in 28 patients (90.3%), including mutations that may affect IFN signaling, T- and B-cell function, the inflammasome, and the complement system. From tested patients 65.5% had detectable virus-specific antibodies, and 6.8% had autoantibodies neutralizing IFN-I. Five patients (16.1%) fulfilled the diagnostic criteria of multisystem inflammatory syndrome in children. Eleven patients (35.4%) died of COVID-19 complications. All together, at least 381 IEI children with COVID-19 have been reported in the literature to date. Although many patients with asymptomatic or mild disease may not have been reported, severe presentation of COVID-19 was observed in 23.6% of the published cases, and the mortality rate was 8.7%. Conclusions: Young patients with preexisting IEI may have higher mortality than children without IEI when infected with SARS-CoV-2. Elucidating the genetic basis of IEI patients with severe/critical COVID-19 may help to develop better strategies for prevention and treatment of severe COVID-19 disease and complications in pediatric patients.

2022 Journal of Clinical Immunology article-journal

Inherited IFNAR1 Deficiency in a Child with Both Critical COVID-19 Pneumonia and Multisystem Inflammatory Syndrome

Hassan Abolhassani, Nils Landegren, Paul Bastard, Marie Materna, Mohammadreza Modaresi, Likun Du, Maribel Aranda-Guillen, Fabian Sardh, Fanglei Zuo, Peng Zhang, Harold Marcotte, Nico Marr, Taushif Khan, Manar Ata, Fatima Al-Ali, Remi Pescarmona, Alexandre Belot, Vivien Beziat, Qian Zhang, Jean-Laurent Casanova, Olle Kämpe, Shen-Ying Zhang, Lennart Hammarström, Qiang Pan-Hammarström

Abstract

Background Inborn errors of immunity (IEI) and autoantibodies to type I interferons (IFNs) underlie critical COVID-19 pneumonia in at least 15% of the patients, while the causes of multisystem inflammatory syndrome in children (MIS-C) remain elusive. Objectives To detect causal genetic variants in very rare cases with concomitant critical COVID-19 pneumonia and MIS-C. Methods Whole exome sequencing was performed, and the impact of candidate gene variants was investigated. Plasma levels of cytokines, specific antibodies against the virus, and autoantibodies against type I IFNs were also measured. Results We report a 3-year-old child who died on day 56 of SARS-CoV-2 infection with an unusual clinical presentation, combining both critical COVID-19 pneumonia and MIS-C. We identified a large, homozygous loss-of-function deletion in IFNAR1, underlying autosomal recessive IFNAR1 deficiency. Conclusions Our findings confirm that impaired type I IFN immunity can underlie critical COVID-19 pneumonia, while suggesting that it can also unexpectedly underlie concomitant MIS-C. Our report further raises the possibility that inherited or acquired dysregulation of type I IFN immunity might contribute to MIS-C in other patients.

2022 Nucleic Acids Research article-journal

Monitoring drug–target interactions through target engagement-mediated amplification on arrays and <i>in situ</i>

Rasel A. Al-Amin, Lars Johansson, Eldar Abdurakhmanov, Nils Landegren, Liza Löf, Linda Arngården, Andries Blokzijl, Richard Svensson, Maria Hammond, Peter Lönn, Johannes Haybaeck, Masood Kamali-Moghaddam, Annika Jenmalm Jensen, U. Helena Danielson, Per Artursson, Thomas Lundbäck, Ulf Landegren

Abstract

Drugs are designed to bind their target proteins in physiologically relevant tissues and organs to modulate biological functions and elicit desirable clinical outcomes. Information about target engagement at cellular and subcellular resolution is therefore critical for guiding compound optimization in drug discovery, and for probing resistance mechanisms to targeted therapies in clinical samples. We describe a target engagement-mediated amplification (TEMA) technology, where oligonucleotide-conjugated drugs are used to visualize and measure target engagement in situ, amplified via rolling-circle replication of circularized oligonucleotide probes. We illustrate the TEMA technique using dasatinib and gefitinib, two kinase inhibitors with distinct selectivity profiles. In vitro binding by the dasatinib probe to arrays of displayed proteins accurately reproduced known selectivity profiles, while their differential binding to fixed adherent cells agreed with expectations from expression profiles of the cells. We also introduce a proximity ligation variant of TEMA to selectively investigate binding to specific target proteins of interest. This form of the assay serves to improve resolution of binding to on- and off-target proteins. In conclusion, TEMA has the potential to aid in drug development and clinical routine by conferring valuable insights in drug–target interactions at spatial resolution in protein arrays, cells and in tissues.

2022 Seminars in Cancer Biology review

Sex dimorphism in the tumor microenvironment : From bench to bedside and back

Fei He, Andrea Rodgers Furones, Nils Landegren, Jonas Fuxe, Dhifaf Sarhan

Abstract

Cancer represents a significant cause of death and suffering in both the developed and developing countries. Key underlying issues in the mortality of cancer are delayed diagnosis and resistance to treatments. However, improvements in biomarkers represent one important step that can be taken for alleviating the suffering caused by malignancy. Precision-based medicine is promising for revolutionizing diagnostic and treatment strategies for cancer patients worldwide. Contemporary methods, including various omics and systems biology approaches, as well as advanced digital imaging and artificial intelligence, allow more accurate assessment of tumor characteristics at the patient level. As a result, treatment strategies can be specifically tailored and adapted for individual and/or groups of patients that carry certain tumor characteristics. This includes immunotherapy, which is based on characterization of the immunosuppressive tumor microenvironment (TME) and, more specifically, the presence and activity of immune cell subsets. Unfortunately, while it is increasingly clear that gender strongly affects immune regulation and response, there is a knowledge gap concerning differences in sex-specific immune responses and how these contribute to the immunosuppressive TME and the response to immunotherapy. In fact, sex dimorphism is poorly understood in cancer progression and is typically ignored in current clinical practice. In this review, we aim to survey the available literature and highlight the existing knowledge gap in order to encourage further studies that would contribute to understanding both gender-biased immunosuppression in the TME and the driver of tumor progression towards invasive and metastatic disease. The review highlights the need to include sex optimized/genderized medicine as a new concept in future medicine cancer diagnostics and treatments.

2022 Journal of Clinical Immunology article-journal

X-Linked TLR7 Deficiency Underlies Critical COVID-19 Pneumonia in a Male Patient with Ataxia-Telangiectasia

Hassan Abolhassani, Ahmad Vosughimotlagh, Takaki Asano, Nils Landegren, Bertrand Boisson, Samaneh Delavari, Paul Bastard, Maribel Aranda-Guillen, Yating Wang, Fanglei Zuo, Fabian Sardh, Harold Marcotte, Likun Du, Shen-Ying Zhang, Qian Zhang, Nima Rezaei, Olle Kampe, Jean-Laurent Casanova, Lennart Hammarstrom, Qiang Pan-Hammarstrom

Abstract

Background Coronavirus disease 2019 (COVID-19) exhibits a wide spectrum of clinical manifestations, ranging from asymptomatic to critical conditions. Understanding the mechanism underlying life-threatening COVID-19 is instrumental for disease prevention and treatment in individuals with a high risk.Objectives We aimed to identify the genetic cause for critical COVID-19 pneumonia in a patient with a preexisting inborn error of immunity (IEI).Methods Serum levels of specific antibodies against the virus and autoantibodies against type I interferons (IFNs) were measured. Whole exome sequencing was performed, and the impacts of candidate gene variants were investigated. We also evaluated 247 ataxia-telangiectasia (A-T) patients in the Iranian IEI registry.Results We report a 7-year-old Iranian boy with a preexisting hyper IgM syndrome who developed critical COVID-19 pneumonia. IgM only specific COVID-19 immune response was detected but no autoantibodies against type I IFN were observed. A homozygous deleterious mutation in the ATM gene was identified, which together with his antibody deficiency, radiosensitivity, and neurological signs, established a diagnosis of A-T. Among the 247 A-T patients evaluated, 36 had SARS-CoV-2 infection, but all had mild symptoms or were asymptomatic except the index patient. A hemizygous deleterious mutation in the TLR7 gene was subsequently identified in the patient.Conclusions We report a unique IEI patient with combined ATM and TLR7 deficiencies. The two genetic defects underlie A-T and critical COVID-19 in this patient, respectively.

2021 Nature Communications article-journal

GWAS for autoimmune Addison's disease identifies multiple risk loci and highlights AIRE in disease susceptibility

Daniel Eriksson, Ellen Christine Röyrvik, Maribel Aranda-Guillen, Amund Holte Berger, Nils Landegren, Haydee Artaza, Åsa Hallgren, Marianne Aardal Grytaas, Sara Ström, Eirik Bratland, Ileana Ruxandra Botusan, Bergithe Eikeland Oftedal, Lars Breivik, Marc Vaudel, Öyvind Helgeland, Alberto Falorni, Anders Palmström Jörgensen, Anna-Lena Hulting, Johan Svartberg, Olov Ekwall, Kristian Johan Fougner, Jeanette Wahlberg, Björn Gunnar Nedrebö, Per Dahlqvist, Per Morten Knappskog, Anette Susanne Böe Wolff, Sophie Bensing, Stefan Johansson, Olle Kämpe, Eystein Sverre Husebye

Abstract

Autoimmune Addison's disease (AAD) is characterized by the autoimmune destruction of the adrenal cortex. Low prevalence and complex inheritance have long hindered successful genetic studies. We here report the first genome-wide association study on AAD, which identifies nine independent risk loci (P&lt;5x10(-8)). In addition to loci implicated in lymphocyte function and development shared with other autoimmune diseases such as HLA, BACH2, PTPN22 and CTLA4, we associate two protein-coding alterations in Autoimmune Regulator (AIRE) with AAD. The strongest, p.R471C (rs74203920, OR=3.4 (2.7-4.3), P=9.0x10(-25)) introduces an additional cysteine residue in the zinc-finger motif of the second PHD domain of the AIRE protein. This unbiased elucidation of the genetic contribution to development of AAD points to the importance of central immunological tolerance, and explains 35-41% of heritability (h(2)). Autoimmune Addison's disease is a rare complex disease, which has not yet been characterized by non-biased genetic studies. Here, the authors perform the first GWAS for the disease, identifying nine loci including two coding variants in the gene Autoimmune Regulator (AIRE).

2021 Journal of Allergy and Clinical Immunology article-journal

Severe COVID-19 in an APS1 patient with interferon autoantibodies treated with plasmapheresis

Andri Lemarquis, Tessa Campbell, Maribel Aranda-Guillén, Viktoria Hennings, Petter Brodin, Olle Kämpe, Kaj Blennow, Henrik Zetterberg, Christine Wennerås, Kristina Eriksson, Nils Landegren, Yenan Bryceson, Stefan Berg, Olov Ekwall

2020 Scandinavian Journal of Immunology article-journal

Screening for autoantibody targets in post-vaccination narcolepsy using proteome arrays

Alexander Lind, Daniel Eriksson, Omar Akel, Anita Ramelius, Lars Palm, Ake Lernmark, Olle Kämpe, Helena Elding Larsson, Nils Landegren

Abstract

Narcolepsy type 1 (NT1) is a chronic sleep disorder caused by a specific loss of hypocretin‐producing neurons. The incidence of NT1 increased in Sweden, Finland and Norway following Pandemrix®‐vaccination, initiated to prevent the 2009 influenza pandemic. The pathogenesis of NT1 is poorly understood, and causal links to vaccination are yet to be clarified. The strong association with Human leukocyte antigen (HLA) DQB1*06:02 suggests an autoimmune pathogenesis, but proposed autoantigens remain controversial. We used a two‐step approach to identify autoantigens in patients that acquired NT1 after Pandemrix®‐vaccination. Using arrays of more than 9000 full‐length human proteins, we screened the sera of 10 patients and 24 healthy subjects for autoantibodies. Identified candidate antigens were expressed in vitro to enable validation studies with radiobinding assays (RBA). The validation cohort included NT1 patients (n = 39), their first‐degree relatives (FDR) (n = 66), population controls (n = 188), and disease controls representing multiple sclerosis (n = 100) and FDR to type 1 diabetes patients (n = 41). Reactivity towards previously suggested NT1 autoantigen candidates including Tribbles homolog 2, Prostaglandin D2 receptor, Hypocretin receptor 2 and α‐MSH/proopiomelanocortin was not replicated in the protein array screen. By comparing case to control signals, three novel candidate autoantigens were identified in the protein array screen; LOC401464, PARP3 and FAM63B. However, the RBA did not confirm elevated reactivity towards either of these proteins. In summary, three putative autoantigens in NT1 were identified by protein array screening. Autoantibodies against these candidates could not be verified with independent methods. Further studies are warranted to identify hypothetical autoantigens related to the pathogenesis of Pandemrix®‐induced NT1.

2020 Cell article-journal

The Immunology of Multisystem Inflammatory Syndrome in Children with COVID-19

Camila Rosat Consiglio, Nicola Cotugno, Fabian Sardh, Christian Pou, Donato Amodio, Lucie Rodriguez, Ziyang Tan, Sonia Zicari, Alessandra Ruggiero, Giuseppe Rubens Pascucci, Veronica Santilli, Tessa Campbell, Yenan Bryceson, Daniel Eriksson, Jun Wang, Alessandra Marchesi, Tadepally Lakshmikanth, Andrea Campana, Alberto Villani, Paolo Rossi, Nils Landegren, Paolo Palma, Petter Brodin

Abstract

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection is typically very mild and often asymptomatic in children. A complication is the rare multisystem inflammatory syndrome in children (MIS-C) associated with COVID-19, presenting 4-6 weeks after infection as high fever, organ dysfunction, and strongly elevated markers of inflammation. The pathogenesis is unclear but has overlapping features with Kawasaki disease suggestive of vasculitis and a likely autoimmune etiology. Weapply systems-level analyses of blood immune cells, cytokines, and autoantibodies in healthy children, children with Kawasaki disease enrolled prior to COVID-19, children infected with SARS-CoV-2, and children presenting with MIS-C. We find that the inflammatory response in MIS-C differs from the cytokine storm of severe acute COVID-19, shares several features with Kawasaki disease, but also differs from this condition with respect to T cell subsets, interleukin (IL)-17A, and biomarkers associated with arterial damage. Finally, autoantibody profiling suggests multiple autoantibodies that could be involved in the pathogenesis of MIS-C.

2019 eLIFE article-journal

Comment on 'AIRE-deficient patients harbor unique high-affinity disease-ameliorating autoantibodies'

Nils Landegren, Lindsey B. Rosen, Eva Freyhult, Daniel Eriksson, Tove Fall, Gustav Smith, Elise M. N. Ferre, Petter Brodin, Donald Sharon, Michael Snyder, Michail Lionakis, Mark Anderson, Olle Kampe

Abstract

The AIRE gene plays a key role in the development of central immune tolerance by promoting thymic presentation of tissue-specific molecules. Patients with AIRE-deficiency develop multiple autoimmune manifestations and display autoantibodies against the affected tissues. In 2016 it was reported that: i) the spectrum of autoantibodies in patients with AIRE-deficiency is much broader than previously appreciated; ii) neutralizing autoantibodies to type I interferons (IFNs) could provide protection against type 1 diabetes in these patients (Meyer et al., 2016). We attempted to replicate these new findings using a similar experimental approach in an independent patient cohort, and found no evidence for either conclusion.

2019 Journal of Allergy and Clinical Immunology article-journal

The autoimmune targets in IPEX are dominated by gut epithelial proteins

Daniel Eriksson, Rosa Bacchetta, Hörður Ingi Gunnarsson, Alice Chan, Federica Barzaghi, Stephan Ehl, Åsa Hallgren, Frederic van Gool, Fabian Sardh, Christina Lundqvist, Saila M. Laakso, Anders Rönnblom, Olov Ekwall, Outi Mäkitie, Sophie Bensing, Eystein S. Husebye, Mark Anderson, Olle Kämpe, Nils Landegren

2018 Scientific Reports article-journal

Common genetic variation in the autoimmune regulator (AIRE) locus is associated with autoimmune Addison's disease in Sweden

Daniel Eriksson, Matteo Bianchi, Nils Landegren, Frida Dalin, Jakob Skov, Lina Hultin-Rosenberg, Argyri Mathioudaki, Jessika Nordin, Asa Hallgren, Goran Andersson, Karolina Tandre, Solbritt Rantapaa Dahlqvist, Peter Soderkvist, Lars Rönnblom, Anna-Lena Hulting, Jeanette Wahlberg, Per Dahlqvist, Olov Ekwall, Jennifer Meadows, Kerstin Lindblad-Toh, Sophie Bensing, Gerli Pielberg, Olle Kampe

Abstract

Autoimmune Addison's disease (AAD) is the predominating cause of primary adrenal failure. Despite its high heritability, the rarity of disease has long made candidate-gene studies the only feasible methodology for genetic studies. Here we conducted a comprehensive reinvestigation of suggested AAD risk loci and more than 1800 candidate genes with associated regulatory elements in 479 patients with AAD and 2394 controls. Our analysis enabled us to replicate many risk variants, but several other previously suggested risk variants failed confirmation. By exploring the full set of 1800 candidate genes, we further identified common variation in the autoimmune regulator (AIRE) as a novel risk locus associated to sporadic AAD in our study. Our findings not only confirm that multiple loci are associated with disease risk, but also show to what extent the multiple risk loci jointly associate to AAD. In total, risk loci discovered to date only explain about 7% of variance in liability to AAD in our study population.

2018 Journal of Clinical Endocrinology and Metabolism article-journal

Cytokine Autoantibody Screening in the Swedish Addison Registry Identifies Patients With Undiagnosed APS1

Daniel Eriksson, Frida Dalin, Gabriel Nordling Eriksson, Nils Landegren, Matteo Bianchi, Åsa Hallgren, Per Dahlqvist, Jeanette Wahlberg, Olov Ekwall, Ola Winqvist, Sergiu-Bogdan Catrina, Johan Rönnelid, Anna-Lena Hulting, Kerstin Lindblad-Toh, Mohammad Alimohammad, Eystein S Husebye, Per Morten Knappskog, Gerli Rosengren Pielberg, Sophie Bensing, Olle Kämpe

Abstract

Context: Autoimmune polyendocrine syndrome type 1 (APS1) is a monogenic disorder that features autoimmune Addison disease as a major component. Although APS1 accounts for only a small fraction of all patients with Addison disease, early identification of these individuals is vital to prevent the potentially lethal complications of APS1.Objective: To determine whether available serological and genetic markers are valuable screening tools for the identification of APS1 among patients diagnosed with Addison disease.Design: We systematically screened 677 patients with Addison disease enrolled in the Swedish Addison Registry for autoantibodies against interleukin-22 and interferon-α4. Autoantibody-positive patients were investigated for clinical manifestations of APS1, additional APS1-specific autoantibodies, and DNA sequence and copy number variations of AIRE.Results: In total, 17 patients (2.5%) displayed autoantibodies against interleukin-22 and/or interferon-α4, of which nine were known APS1 cases. Four patients previously undiagnosed with APS1 fulfilled clinical, genetic, and serological criteria. Hence, we identified four patients with undiagnosed APS1 with this screening procedure.Conclusion: We propose that patients with Addison disease should be routinely screened for cytokine autoantibodies. Clinical or serological support for APS1 should warrant DNA sequencing and copy number analysis of AIRE to enable early diagnosis and prevention of lethal complications.