Scientist

Nils Landegren

ORCID 0000-0002-6163-9540

DiVA

Publications

2018 Scientific Reports article-journal

ILF2 and ILF3 are autoantigens in canine systemic autoimmune disease

Hanna D. Bremer, Nils Landegren, Ronald Sjöberg, Åsa Hallgren, Stefanie Renneker, Erik Lattwein, Dag Leonard, Maija-Leena Eloranta, Lars Rönnblom, Gunnel Nordmark, Peter Nilsson, Goran Andersson, Inger Lilliehöök, Kerstin Lindblad-Toh, Olle Kämpe, Helene Hansson-Hamlin

Abstract

Dogs can spontaneously develop complex systemic autoimmune disorders, with similarities to human autoimmune disease. Autoantibodies directed at self-antigens are a key feature of these autoimmune diseases. Here we report the identification of interleukin enhancer-binding factors 2 and 3 (ILF2 and ILF3) as autoantigens in canine immune-mediated rheumatic disease. The ILF2 autoantibodies were discovered in a small, selected canine cohort through the use of human protein arrays; a method not previously described in dogs. Subsequently, ILF3 autoantibodies were also identified in the same cohort. The results were validated with an independent method in a larger cohort of dogs. ILF2 and ILF3 autoantibodies were found exclusively, and at a high frequency, in dogs that showed a speckled pattern of antinuclear antibodies on immunofluorescence. ILF2 and ILF3 autoantibodies were also found at low frequency in human patients with SLE and Sjogren's syndrome. These autoantibodies have the potential to be used as diagnostic biomarkers for canine, and possibly also human, autoimmune disease.

2016 Journal of Clinical Endocrinology and Metabolism article-journal

A Longitudinal Follow-up of Autoimmune Polyendocrine Syndrome Type 1

Oyvind Bruserud, Bergithe E. Oftedal, Nils Landegren, Martina M. Erichsen, Eirik Bratland, Kari Lima, Anders P. Jorgensen, Anne G. Myhre, Johan Svartberg, Kristian J. Fougner, Asne Bakke, Bjorn G. Nedrebo, Bjarne Mella, Lars Breivik, Marte K. Viken, Per M. Knappskog, Mihaela C. Marthinussen, Kristian Lovas, Olle Kampe, Anette B. Wolff, Eystein S. Husebye

Abstract

Context:Autoimmune polyendocrine syndrome type 1 (APS1) is a childhood-onset monogenic disease defined by the presence of two of the three major components: hypoparathyroidism, primary adrenocortical insufficiency, and chronic mucocutaneous candidiasis (CMC). Information on longitudinal follow-up of APS1 is sparse.Objective: To describe the phenotypes of APS1 and correlate the clinical features with autoantibody profiles and autoimmune regulator (AIRE) mutations during extended follow-up (1996-2016).Patients: All known Norwegian patients with APS1.Results: Fifty-two patients from 34 families were identified. The majority presented with one of the major disease components during childhood. Enamel hypoplasia, hypoparathyroidism, and CMC were the most frequent components. With age, most patients presented three to five disease manifestations, although some had milder phenotypes diagnosed in adulthood. Fifteen of the patients died during follow-up (median age at death, 34 years) or were deceasedsiblingswithahighprobability of undisclosed APS1. All except three had interferon-omega) autoantibodies, and allhadorgan-specific autoantibodies. The most common AIRE mutation was c.967_979del13, found in homozygosity in 15 patients. A mild phenotype was associated with the splice mutation c.879+1G>A. Primary adrenocortical insufficiency and type 1 diabetes were associated with protective human leucocyte antigen genotypes.Conclusions: Multiple presumable autoimmune manifestations, in particular hypoparathyroidism, CMC, and enamel hypoplasia, should prompt further diagnostic workup using autoantibody analyses (eg, interferon-omega) and AIRE sequencing to reveal APS1, even in adults. Treatment is complicated, and mortality is high. Structured follow-up should be performed in a specialized center.

2016 Ophthalmology book

Aryl Hydrocarbon Receptor-Interacting Protein-Like 1 in Cancer-Associated Retinopathy

Frida Dalin, Grazyna Adamus, Sufang Yang, Eva Landgren, Josefine Palle, Åsa Hallgren, B M Frost, Therese Hugosson, Nils Landegren, Daniel Eriksson, Sten Andreasson, Khalid F. Tabbara, Olle Kämpe, Mohammad Alimohammadi

2016 Journal of the American Society of Nephrology article-journal

Autoantibodies Targeting a Collecting Duct-Specific Water Channel in Tubulointerstitial Nephritis.

Nils Landegren, Mina Pourmousa Lindberg, Jakob Skov, Åsa Hallgren, Daniel Eriksson, Trine Lisberg Toft-Bertelsen, Nanna MacAulay, Eva Hagforsen, Anne Räisänen-Sokolowski, Heikki Saha, Thomas Nilsson, Gunnel Nordmark, Sophie Ohlsson, Jan Gustafsson, Eystein S Husebye, Erik Larsson, Mark S Anderson, Jaakko Perheentupa, Fredrik Rorsman, Robert A Fenton, Olle Kämpe

Abstract

Tubulointerstitial nephritis is a common cause of kidney failure and may have diverse etiologies. This form of nephritis is sometimes associated with autoimmune disease, but the role of autoimmune mechanisms in disease development is not well understood. Here, we present the cases of three patients with autoimmune polyendocrine syndrome type 1 who developed tubulointerstitial nephritis and ESRD in association with autoantibodies against kidney collecting duct cells. One of the patients developed autoantibodies targeting the collecting duct-specific water channel aquaporin 2, whereas autoantibodies of the two other patients reacted against the HOXB7 or NFAT5 transcription factors, which regulate the aquaporin 2 promoter. Our findings suggest that tubulointerstitial nephritis developed in these patients as a result of an autoimmune insult on the kidney collecting duct cells.

2016 Journal of Internal Medicine article-journal

Extended exome sequencing identifies BACH2 as a novel major risk locus for Addison's disease

D. Eriksson, Matteo Bianchi, Nils Landegren, Jessika Nordin, Frida Dalin, Argyri Mathioudaki, G. N. Eriksson, Lina Hultin-Rosenberg, Johanna Dahlqvist, H. Zetterqvist, Andreas Karlsson, Anna Hallgren, F. H. G. Farias, Eva Murén, Kerstin M. Ahlgren, Anna Lobell, G. Andersson, Karolina Tandre, S. R. Dahlqvist, P. Soderkvist, Lars Rönnblom, A. -L Hulting, J. Wahlberg, O. Ekwall, P. Dahlqvist, Jennifer R. S. Meadows, S. Bensing, Kerstin Lindblad-Toh, Olle Kämpe, Gerli R. Pielberg

Abstract

BackgroundAutoimmune disease is one of the leading causes of morbidity and mortality worldwide. In Addison's disease, the adrenal glands are targeted by destructive autoimmunity. Despite being the most common cause of primary adrenal failure, little is known about its aetiology. MethodsTo understand the genetic background of Addison's disease, we utilized the extensively characterized patients of the Swedish Addison Registry. We developed an extended exome capture array comprising a selected set of 1853 genes and their potential regulatory elements, for the purpose of sequencing 479 patients with Addison's disease and 1394 controls. ResultsWe identified BACH2 (rs62408233-A, OR = 2.01 (1.71-2.37), P = 1.66 x 10(-15), MAF 0.46/0.29 in cases/controls) as a novel gene associated with Addison's disease development. We also confirmed the previously known associations with the HLA complex. ConclusionWhilst BACH2 has been previously reported to associate with organ-specific autoimmune diseases co-inherited with Addison's disease, we have identified BACH2 as a major risk locus in Addison's disease, independent of concomitant autoimmune diseases. Our results may enable future research towards preventive disease treatment.

2016 Scientific Reports article-journal

Proteome-wide survey of the autoimmune target repertoire in autoimmune polyendocrine syndrome type 1

Nils Landegren, Donald Sharon, Eva Freyhult, Åsa Hallgren, Daniel Eriksson, Per-Henrik Edqvist, Sophie Bensing, Jeanette Wahlberg, Lawrence M Nelson, Jan Gustafsson, Eystein S Husebye, Mark S Anderson, Michael Snyder, Olle Kämpe

Abstract

Autoimmune polyendocrine syndrome type 1 (APS1) is a monogenic disorder that features multiple autoimmune disease manifestations. It is caused by mutations in the Autoimmune regulator (AIRE) gene, which promote thymic display of thousands of peripheral tissue antigens in a process critical for establishing central immune tolerance. We here used proteome arrays to perform a comprehensive study of autoimmune targets in APS1. Interrogation of established autoantigens revealed highly reliable detection of autoantibodies, and by exploring the full panel of more than 9000 proteins we further identified MAGEB2 and PDILT as novel major autoantigens in APS1. Our proteome-wide assessment revealed a marked enrichment for tissue-specific immune targets, mirroring AIRE's selectiveness for this category of genes. Our findings also suggest that only a very limited portion of the proteome becomes targeted by the immune system in APS1, which contrasts the broad defect of thymic presentation associated with AIRE-deficiency and raises novel questions what other factors are needed for break of tolerance.

2015 thesis

Biomarker Discovery in Tissue-specific Autoimmune Disease

Nils Landegren

Abstract

Autoimmune diseases encompass a diverse group of disorders that collectively affect 5% of the population. Despite large clinical variability, autoimmune disorders share a common etiology in that they all develop from immune responses against self. T-cell receptors and antibodies recognize distinct self-molecules and direct destructive effector mechanisms to the target organs. Characterization of autoimmune targets can help in the understanding autoimmune disease features and is of additional importance for subsequent use in clinical diagnosis.Rare monogenic disorder can provide an access to the study and understanding of mechanisms underlying common and more complex diseases. Autoimmune polyendocrine syndrome type 1 (APS1) is an autosomal recessive disorder caused by mutations in the AIRE gene, and is a valuable model of tissue-specific autoimmune disease. APS1 patients develop multiple autoimmune disease manifestations and display autoantibodies against the affected tissues.Recent development in protein array technology has opened a novel avenue for explorative biomarker studies in autoimmune disorders. Present-day protein arrays contain many thousands of full-length human proteins and enable autoantibody screens at the proteome-scale.In the current work I have utilized proteome arrays to perform a comprehensive study of autoimmune targets in APS1. Survey of established autoantigens revealed highly reliable detection of autoantibodies, and by exploring the full panel of 9000 proteins we further identified three novel, major autoantigens. Our findings revealed a marked enrichment for tissue-specific immune targets and further suggest that only a very limited portion of the proteome becomes targeted by the immune system in APS1. This work identifies prostatic transglutaminase 4 as novel male-specific autoantigen. In the mouse model of APS1 we could link TGM4 immunity with a tissue-destructive prostatitis, a compromised prostatic secretion of TGM4 and with defect in the establishment of central immune tolerance for TGM4. Our findings suggest prostate autoimmunity is a major manifestation in male APS1 patients with potential role in development of subfertility. In this doctoral work we also report on collecting duct autoantibodies in APS1 patients with interstitial nephritis and on the identification of aquaporin 2 as a collecting duct autoantigen. Collectively, the present investigations provide an overview-perspective on the autoimmune target repertoire in APS1 and identify novel autoimmune manifestations of the syndrome.

2015 Journal of Clinical Investigation book

Development of autoantibodies against muscle-specific FHL1 in severe inflammatory myopathies

Inka Albrecht, Cecilia Wick, Åsa Hallgren, Anna Tjärnlund, Kanneboyina Nagaraju, Felipe Andrade, Kathryn Thompson, William Coley, Aditi Phadke, Lina-Marcela Diaz-Gallo, Matteo Bottai, Inger Nennesmo, Karine Chemin, Jessica Herrath, Karin Johansson, Anders Wikberg, A. Jimmy Ytterberg, Roman A. Zubarev, Olof Danielsson, Olga Krystufkova, Jiri Vencovsky, Nils Landegren, Marie Wahren-Herlenius, Leonid Padyukov, Olle Kämpe, Ingrid E. Lundberg

Abstract

Mutations of the gene encoding four-and-a-half LIM domain 1 (FHL1) are the causative factor of several X-linked hereditary myopathies that are collectively termed FHL1-related myopathies. These disorders are characterized by severe muscle dysfunction and damage. Here, we have shown that patients with idiopathic inflammatory myopathies (IIMs) develop autoimmunity to FHL1, which is a muscle-specific protein. Anti-FHL1 autoantibodies were detected in 25% of IIM patients, while patients with other autoimmune diseases or muscular dystrophies were largely anti-FHL1 negative. Anti-FHL1 reactivity was predictive for muscle atrophy, dysphagia, pronounced muscle fiber damage, and vasculitis. FHL1 showed an altered expression pattern, with focal accumulation in the muscle fibers of autoantibody-positive patients compared with a homogeneous expression in anti-FHL1-negative patients and healthy controls. We determined that FHL1 is a target of the cytotoxic protease granzyme B, indicating that the generation of FHL1 fragments may initiate FHL1 autoimmunity. Moreover, immunization of myositis-prone mice with FHL1 aggravated muscle weakness and increased mortality, suggesting a direct link between anti-FHL1 responses and muscle damage. Together, our findings provide evidence that FHL1 may be involved in the pathogenesis not only of genetic FHL1-related myopathies but also of autoimmune IIM. Importantly, these results indicate that anti-FHL1 autoantibodies in peripheral blood have promising potential as a biomarker to identify a subset of severe IIM.

2015 Science Translational Medicine article-journal

Transglutaminase 4 as a prostate autoantigen in male subfertility

Nils Landegren, Donald Sharon, Anthony K. Shum, Imran S. Khan, Kayla J. Fasano, Åsa Hallgren, Caroline Kampf, Eva Freyhult, Brita Ardesjo-Lundgren, Mohammad Alimohammadi, Sandra Rathsman, Jonas F. Ludvigsson, Dan Lundh, Ruben Motrich, Virginia Rivero, Lawrence Fong, Aleksander Giwercman, Jan Gustafsson, Jaakko Perheentupa, Eystein S. Husebye, Mark S. Anderson, Michael Snyder, Olle Kämpe

Abstract

Autoimmune polyendocrine syndrome type 1 (APS1), a monogenic disorder caused by AIRE gene mutations, features multiple autoimmune disease components. Infertility is common in both males and females with APS1. Although female infertility can be explained by autoimmune ovarian failure, the mechanisms underlying male infertility have remained poorly understood. We performed a proteome-wide autoantibody screen in APS1 patient sera to assess the autoimmune response against the male reproductive organs. By screening human protein arrays with male and female patient sera and by selecting for gender-imbalanced autoantibody signals, we identified transglutaminase 4 (TGM4) as a male-specific autoantigen. Notably, TGM4 is a prostatic secretory molecule with critical role in male reproduction. TGM4 autoantibodies were detected in most of the adult male APS1 patients but were absent in all the young males. Consecutive serum samples further revealed that TGM4 autoantibodies first presented during pubertal age and subsequent to prostate maturation. We assessed the animal model for APS1, the Aire-deficient mouse, and found spontaneous development of TGM4 autoantibodies specifically in males. Aire-deficient mice failed to present TGM4 in the thymus, consistent with a defect in central tolerance for TGM4. In the mouse, we further link TGM4 immunity with a destructive prostatitis and compromised secretion of TGM4. Collectively, our findings in APS1 patients and Aire-deficient mice reveal prostate autoimmunity as a major manifestation of APS1 with potential role in male subfertility.

2014 PLOS ONE article-journal

Lack of evidence for a role of islet autoimmunity in the aetiology of canine diabetes mellitus

Kerstin M Ahlgren, Tove Fall, Nils Landegren, Lars Grimelius, Henrik von Euler, Katarina Sundberg, Kerstin Lindblad-Toh, Anna Lobell, Åke Hedhammar, Göran Andersson, Helene Hansson-Hamlin, Åke Lernmark, Olle Kämpe

Abstract

AIMS/HYPOTHESIS:Diabetes mellitus is one of the most common endocrine disorders in dogs and is commonly proposed to be of autoimmune origin. Although the clinical presentation of human type 1 diabetes (T1D) and canine diabetes are similar, the aetiologies may differ. The aim of this study was to investigate if autoimmune aetiology resembling human T1D is as prevalent in dogs as previously reported.METHODS:Sera from 121 diabetic dogs representing 40 different breeds were tested for islet cell antibodies (ICA) and GAD65 autoantibodies (GADA) and compared with sera from 133 healthy dogs. ICA was detected by indirect immunofluorescence using both canine and human frozen sections. GADA was detected by in vitro transcription and translation (ITT) of human and canine GAD65, followed by immune precipitation. Sections of pancreata from five diabetic dogs and two control dogs were examined histopathologically including immunostaining for insulin, glucagon, somatostatin and pancreas polypeptide.RESULTS:None of the canine sera analysed tested positive for ICA on sections of frozen canine or human ICA pancreas. However, serum from one diabetic dog was weakly positive in the canine GADA assay and serum from one healthy dog was weakly positive in the human GADA assay. Histopathology showed marked degenerative changes in endocrine islets, including vacuolisation and variable loss of immune-staining for insulin. No sign of inflammation was noted.CONCLUSIONS/INTERPRETATIONS:Contrary to previous observations, based on results from tests for humoral autoreactivity towards islet proteins using four different assays, and histopathological examinations, we do not find any support for an islet autoimmune aetiology in canine diabetes mellitus.

n.d. manuscript

Autoantibodies Targeting a Collecting Duct-specific Water Channel in Tubulointerstitial Nephritis

Nils Landegren

n.d. manuscript

Autoimmunity detection via proximity assays

Felipe de Oliveira, Nils Landegren, Phathutshedzo Muthelo, Lernmark Åke, Ulf Landegren, Masood Kamali-Moghaddam

Abstract

Since autoantibodies are recognized as valuable biomarkers for clinical diagnostics and prognostics in autoimmune diseases such as Stiff Person Syndrome (SPS) and Type 1 diabetes, detection of such markers at improved sensitivity and specificity could be of significant interest. In addition, as proximity assays have been shown to offer highly sensitive and specific detection of multiple proteins, the technique could be expanded to applications for autoimmunity detection. In the present study, we have applied the newly developed proximity ligation assay with rolling circle amplification (PLARCA), and proximity extension assay (PEA) for the detection of GADA, autoantibodies specific for glutamic acid decarboxylase 65 (GAD65). Through the use of oligonucleotide conjugated autoantigen GAD65 and anti-human antibodies, as proximity probes, we were able to apply these proximity assays to detect GADA in a set of SPS patient samples. In summary, we have applied and established both PLARCA and PEA, as a proof of concept, for the use of the specific and sensitive autoimmune detection.

n.d. manuscript

Diabetes mellitus in dog - : No evidence for a type-1-like phenotype

Kerstin. M Ahlgren, Tove Fall, Nils Landegren, Henrik von Euler, Katarina Sundberg, Kerstin Lindblad-Toh, Anna Lobell, Åke Hedhammar, Göran Andersson, Helene Hansson-Hamlin, Åke Lernmark, Olle Kämpe

Abstract

Aims/hypothesis
Diabetes mellitus (DM) is one of the most common endocrine disorders in dogs, and is commonly proposed to be of autoimmune origin. Although the clinical symptoms of human type 1 diabetes (T1D) and canine DM are similar, the aetiologies may differ. The aim of this study was to investigate if autoimmune aetiology resembling human T1D is as prevalent in dogs as previously reported.
Methods
 Sera from 121 diabetic dogs representing 38 different breeds were tested for islet cell antibodies (ICA) and GAD65 autoantibodies (GADA) and compared with sera from 133 healthy dogs from 40 breeds. ICA was detected by indirect immunofluorescence using both canine and human frozen sections. GADA was detected by in vitro transcription and translation (ITT) of human and canine GAD65, followed by immunoprecipitation.
Results
None of the canine sera analyzed tested positive for ICA on sections of frozen canine or human ICA pancreas. However, serum from one diabetic dog was weakly positive in the canine GADA assay and serum from one healthy dog was weakly positive in the human GADA assay.
Conclusions/interpretations
Based on sera from 121 diabetic dogs from 38 different breeds were tested for humoral autoreactivity using four different assays, contrary to previous observations, we find no support for an autoimmune aetiology  in canine diabetes.

n.d. manuscript

Target Engagement-Mediated Amplification for Monitoring Drug-Target Interactions in Situ

Rasel A. Al-Amin, Lars Johansson, Nils Landegren, Liza Löf, Eldar Abdurakhmanov, Andries Blokzijl, Richard Svensson, Peter Lönn, Ola Söderberg, Masood Kamali-Moghaddam, U. Helena Danielson, Per Artursson, Thomas Lundbäck, Ulf Landegren

Abstract

It is important to determine the localization of drugs or drug candidates at cellular and subcellular resolution in relevant clinical specimens. This is necessary to evaluate drug candidates from early stages of drug development to clinical evaluation of mutations potentially causing resistance to targeted therapy. We describe a technology where oligonucleotide-conjugated drug molecules are used to visualize and measure target engagement in situ via rolling-circle amplification (RCA) of circularized oligonucleotide probes (padlock probes). We established this target engagement-mediated amplification (TEMA) technique using kinase inhibitor precursor compounds, and we applied the assay to investigate target interactions by microscopy in pathology tissue sections and using flow cytometry for blood samples from patients, as well as in commercial arrays including almost half of all human proteins.  In the variant proxTEMAtechnique, in situ proximity ligation assays were performed by combining drug-DNA conjugates with antibody-DNA conjugates to specifically reveal drug binding to particular on- or off-targets in pathological tissues sections. In conclusion, the TEMA methods successfully visualize drug-target interaction by experimental and clinically approved kinase inhibitors in situ and with kinases among a large collection of arrayed proteins.