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Dive into the research topics where Benedicte A. Lie is active.

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Featured researches published by Benedicte A. Lie.


Nature Genetics | 2013

Identification of multiple risk variants for ankylosing spondylitis through high-density genotyping of immune-related loci

Adrian Cortes; Johanna Hadler; Jenny P. Pointon; Philip C. Robinson; Tugce Karaderi; Paul Leo; Katie Cremin; Karena Pryce; Jessica Harris; Seunghun Lee; Kyung Bin Joo; Seung Cheol Shim; Michael H. Weisman; Michael M. Ward; Xiaodong Zhou; Henri Jean Garchon; Gilles Chiocchia; Johannes Nossent; Benedicte A. Lie; Øystein Førre; Jaakko Tuomilehto; Kari Laiho; Lei Jiang; Yu Liu; Xin Wu; Linda A. Bradbury; Dirk Elewaut; Ruben Burgos-Vargas; Simon Stebbings; L. H. Appleton

Ankylosing spondylitis is a common, highly heritable inflammatory arthritis affecting primarily the spine and pelvis. In addition to HLA-B*27 alleles, 12 loci have previously been identified that are associated with ankylosing spondylitis in populations of European ancestry, and 2 associated loci have been identified in Asians. In this study, we used the Illumina Immunochip microarray to perform a case-control association study involving 10,619 individuals with ankylosing spondylitis (cases) and 15,145 controls. We identified 13 new risk loci and 12 additional ankylosing spondylitis–associated haplotypes at 11 loci. Two ankylosing spondylitis–associated regions have now been identified encoding four aminopeptidases that are involved in peptide processing before major histocompatibility complex (MHC) class I presentation. Protective variants at two of these loci are associated both with reduced aminopeptidase function and with MHC class I cell surface expression.


Nature Genetics | 2010

Genome-wide association study of systemic sclerosis identifies CD247 as a new susceptibility locus

Timothy R. D. J. Radstake; Olga Y. Gorlova; Blanca Rueda; José Martín; Behrooz Z. Alizadeh; Rogelio Palomino-Morales; Marieke J. H. Coenen; Madelon C. Vonk; Alexandre E. Voskuyl; Annemie J. Schuerwegh; Jasper Broen; Piet L. C. M. van Riel; Ruben van 't Slot; Annet Italiaander; Roel A. Ophoff; Gabriela Riemekasten; Nico Hunzelmann; Carmen P. Simeon; Norberto Ortego-Centeno; Miguel A. González-Gay; María Francisca González-Escribano; Paolo Airò; Jaap van Laar; Ariane L. Herrick; Jane Worthington; Roger Hesselstrand; Vanessa Smith; Filip De Keyser; F. Houssiau; Meng May Chee

Systemic sclerosis (SSc) is an autoimmune disease characterized by fibrosis of the skin and internal organs that leads to profound disability and premature death. To identify new SSc susceptibility loci, we conducted the first genome-wide association study in a population of European ancestry including a total of 2,296 individuals with SSc and 5,171 controls. Analysis of 279,621 autosomal SNPs followed by replication testing in an independent case-control set of European ancestry (2,753 individuals with SSc (cases) and 4,569 controls) identified a new susceptibility locus for systemic sclerosis at CD247 (1q22–23, rs2056626, P = 2.09 × 10−7 in the discovery samples, P = 3.39 × 10−9 in the combined analysis). Additionally, we confirm and firmly establish the role of the MHC (P = 2.31 × 10−18), IRF5 (P = 1.86 × 10−13) and STAT4 (P = 3.37 × 10−9) gene regions as SSc genetic risk factors.


Gastroenterology | 2010

Genome-Wide Association Analysis in Primary Sclerosing Cholangitis

Tom H. Karlsen; Andre Franke; Espen Melum; Arthur Kaser; Johannes R. Hov; Tobias Balschun; Benedicte A. Lie; Annika Bergquist; Christoph Schramm; Tobias J. Weismüller; Daniel Gotthardt; Christian Rust; Eva Philipp; Teresa Fritz; Liesbet Henckaerts; Rinse K. Weersma; Pieter Stokkers; Cyriel Y. Ponsioen; Cisca Wijmenga; Martina Sterneck; Michael Nothnagel; Jochen Hampe; Andreas Teufel; Heiko Runz; Philip Rosenstiel; Adolf Stiehl; Severine Vermeire; Ulrich Beuers; Michael P. Manns; Erik Schrumpf

BACKGROUND & AIMS We aimed to characterize the genetic susceptibility to primary sclerosing cholangitis (PSC) by means of a genome-wide association analysis of single nucleotide polymorphism (SNP) markers. METHODS A total of 443,816 SNPs on the Affymetrix SNP Array 5.0 (Affymetrix, Santa Clara, CA) were genotyped in 285 Norwegian PSC patients and 298 healthy controls. Associations detected in this discovery panel were re-examined in independent case-control panels from Scandinavia (137 PSC cases and 368 controls), Belgium/The Netherlands (229 PSC cases and 735 controls), and Germany (400 cases and 1832 controls). RESULTS The strongest associations were detected near HLA-B at chromosome 6p21 (rs3099844: odds ratio [OR], 4.8; 95% confidence interval [CI], 3.6-6.5; P = 2.6 x 10(-26); and rs2844559: OR, 4.7; 95% CI, 3.5-6.4; P = 4.2 x 10(-26) in the discovery panel). Outside the HLA complex, rs9524260 at chromosome 13q31 showed significant associations in 3 of 4 study panels. Lentiviral silencing of glypican 6, encoded at this locus, led to the up-regulation of proinflammatory markers in a cholangiocyte cell line. Of 15 established ulcerative colitis susceptibility loci, significant replication was obtained at chromosomes 2q35 and 3p21 (rs12612347: OR, 1.26; 95% CI, 1.06-1.50; and rs3197999: OR, 1.22; 95% CI, 1.02-1.47, respectively), with circumstantial evidence supporting the G-protein-coupled bile acid receptor 1 and macrophage-stimulating 1, respectively, as the likely disease genes. CONCLUSIONS Strong HLA associations and a subset of genes involved in bile homeostasis and other inflammatory conditions constitute key components of the genetic architecture of PSC.


Clinical Gastroenterology and Hepatology | 2005

Celiac Disease Genetics: Current Concepts and Practical Applications

Ludvig M. Sollid; Benedicte A. Lie

Celiac disease is a multifactorial disease with complex genetics. Both HLA and non-HLA genes contribute to the genetic component, but recent findings suggest that the importance of non-HLA genes might have been overestimated. No susceptibility genes other than HLA-DQ have yet been identified in celiac disease. In contrast to the meager knowledge regarding non-HLA genes, we have acquired a detailed understanding about which HLA genes are predisposing for disease, and how they are involved in the pathogenesis. This knowledge might pave the road for novel treatments for the disease. The role of HLA as a necessary, but not sufficient, genetic factor can moreover be used for diagnostic purposes to exclude a celiac disease diagnosis. The applicability of HLA genotyping is particularly useful for excluding celiac disease in family members or risk groups with fairly unbiased distribution of HLA alleles (ie, patients with Turner syndrome and patients with Down syndrome) and in patients with a clinical suspicion of celiac disease.


PLOS Genetics | 2011

Identification of novel genetic markers associated with clinical phenotypes of systemic sclerosis through a genome-wide association strategy

Olga Y. Gorlova; José Martín; Blanca Rueda; Bobby P. C. Koeleman; Jun Ying; María Teruel; Lina Marcela Diaz-Gallo; Jasper Broen; Madelon C. Vonk; Carmen P. Simeon; Behrooz Z. Alizadeh; Marieke J. H. Coenen; Alexandre E. Voskuyl; Annemie J. Schuerwegh; Piet L. C. M. van Riel; Marie Vanthuyne; Ruben van 't Slot; Annet Italiaander; Roel A. Ophoff; Nicolas Hunzelmann; Vicente Fonollosa; Norberto Ortego-Centeno; Miguel A. González-Gay; Francisco J. García-Hernández; María F. González-EscribanoMarí; Paolo Airò; Jacob M van Laar; Jane Worthington; Roger Hesselstrand; Vanessa Smith

The aim of this study was to determine, through a genome-wide association study (GWAS), the genetic components contributing to different clinical sub-phenotypes of systemic sclerosis (SSc). We considered limited (lcSSc) and diffuse (dcSSc) cutaneous involvement, and the relationships with presence of the SSc-specific auto-antibodies, anti-centromere (ACA), and anti-topoisomerase I (ATA). Four GWAS cohorts, comprising 2,296 SSc patients and 5,171 healthy controls, were meta-analyzed looking for associations in the selected subgroups. Eighteen polymorphisms were further tested in nine independent cohorts comprising an additional 3,175 SSc patients and 4,971 controls. Conditional analysis for associated SNPs in the HLA region was performed to explore their independent association in antibody subgroups. Overall analysis showed that non-HLA polymorphism rs11642873 in IRF8 gene to be associated at GWAS level with lcSSc (P = 2.32×10−12, OR = 0.75). Also, rs12540874 in GRB10 gene (P = 1.27 × 10−6, OR = 1.15) and rs11047102 in SOX5 gene (P = 1.39×10−7, OR = 1.36) showed a suggestive association with lcSSc and ACA subgroups respectively. In the HLA region, we observed highly associated allelic combinations in the HLA-DQB1 locus with ACA (P = 1.79×10−61, OR = 2.48), in the HLA-DPA1/B1 loci with ATA (P = 4.57×10−76, OR = 8.84), and in NOTCH4 with ACA P = 8.84×10−21, OR = 0.55) and ATA (P = 1.14×10−8, OR = 0.54). We have identified three new non-HLA genes (IRF8, GRB10, and SOX5) associated with SSc clinical and auto-antibody subgroups. Within the HLA region, HLA-DQB1, HLA-DPA1/B1, and NOTCH4 associations with SSc are likely confined to specific auto-antibodies. These data emphasize the differential genetic components of subphenotypes of SSc.


Genes and Immunity | 2009

A coding polymorphism in NALP1 confers risk for autoimmune Addison's disease and type 1 diabetes.

Ng’weina Francis Magitta; A. S. Boe Wolff; Stefan Johansson; Beate Skinningsrud; Benedicte A. Lie; K-M Myhr; Dag E. Undlien; Geir Joner; Pål R. Njølstad; Tore K. Kvien; Øystein Førre; Per M. Knappskog; Eystein S. Husebye

Variants in the gene encoding NACHT leucine-rich-repeat protein 1 (NALP1), an important molecule in innate immunity, have recently been shown to confer risk for vitiligo and associated autoimmunity. We hypothesized that sequence variants in this gene may be involved in susceptibility to a wider spectrum of autoimmune diseases. Investigating large patient cohorts from six different autoimmune diseases, that is autoimmune Addisons disease (n=333), type 1 diabetes (n=1086), multiple sclerosis (n=502), rheumatoid arthritis (n=945), systemic lupus erythematosus (n=156) and juvenile idiopathic arthritis (n=505), against 3273 healthy controls, we analyzed four single nucleotide polymorphisms (SNPs) in NALP1. The major allele of the coding SNP rs12150220 revealed significant association with autoimmune Addisons disease compared with controls (OR=1.25, 95% CI: 1.06–1.49, P=0.007), and with type 1 diabetes (OR=1.15, 95% CI: 1.04–1.27, P=0.005). Trends toward the same associations were seen in rheumatoid arthritis, systemic lupus erythematosus and, although less obvious, multiple sclerosis. Patients with juvenile idiopathic arthritis did not show association with NALP1 gene variants. The results indicate that NALP1 and the innate immune system may be implicated in the pathogenesis of many autoimmune disorders, particularly organ-specific autoimmune diseases.


Arthritis & Rheumatism | 2010

Protection against anti–citrullinated protein antibody–positive rheumatoid arthritis is predominantly associated with HLA–DRB1*1301: A meta-analysis of HLA–DRB1 associations with anti–citrullinated protein antibody–positive and anti–citrullinated protein antibody–negative rheumatoid arthritis in four European populations

Diane van der Woude; Benedicte A. Lie; Emeli Lundström; Alejandro Balsa; Anouk L. Feitsma; Jeanine J. Houwing-Duistermaat; Willem Verduijn; Gry B. N. Nordang; Lars Alfredsson; Lars Klareskog; Dora Pascual-Salcedo; Miguel A. González-Gay; Miguel A. López-Nevot; Fernando Valero; Bart O. Roep; Tom W J Huizinga; Tore K. Kvien; Javier Martin; Leonid Padyukov; René R. P. de Vries; René E. M. Toes

OBJECTIVE The protective effect of HLA-DRB1 alleles on the development of rheumatoid arthritis (RA) is poorly understood. The aim of this study was to perform a meta-analysis of 4 European populations to investigate which HLA-DRB1 alleles are associated with protection in anti-citrullinated protein antibody (ACPA)-positive RA and ACPA-negative RA. METHODS Data for >2,800 patients and >3,000 control subjects for whom information on HLA-DRB1 typing and ACPA status was available were collected from 4 European countries: Norway, Sweden, The Netherlands, and Spain. The odds ratios (ORs) and 95% confidence intervals (95% CIs) associated with the different HLA-DRB1 alleles were analyzed in a combined meta-analysis focused on protective alleles and classifications. The analysis of ACPA-positive RA was stratified for the shared epitope (SE) alleles, to correct for skewing due to this association. RESULTS In ACPA-positive RA, the only alleles that conveyed protection after stratification for SE were HLA-DRB1*13 alleles (OR 0.54 [95% CI 0.38-0.77]). The protective effect of the allele classifications based on the DERAA and D70 sequences was no longer present after exclusion of DRB1*13 (for D70, OR 0.97 [95% CI 0.75-1.25]), indicating that DRB1*13, rather than the DERAA or D70 sequence as such, is associated with protection. Among the DRB1*13 alleles, only DRB1*1301 was associated with protection (OR 0.24 [95% CI 0.09-0.59]). Protection appeared to follow a north-to-south gradient, with the strongest association in northern European countries. In ACPA-negative RA, there were no robust associations with HLA-DRB1 alleles. CONCLUSION Our data do not support any of the classifications of protective alleles and indicate that protection against ACPA-positive RA is predominantly associated with HLA-DRB1*1301.


Molecular Psychiatry | 2015

Genetic pleiotropy between multiple sclerosis and schizophrenia but not bipolar disorder: differential involvement of immune-related gene loci

Ole A. Andreassen; Hanne F. Harbo; Yunpeng Wang; Wesley K. Thompson; Andrew J. Schork; Morten Mattingsdal; Zuber; Francesco Bettella; Stephan Ripke; John R. Kelsoe; Kenneth S. Kendler; Michael Conlon O'Donovan; Pamela Sklar; Linda K. McEvoy; Rahul S. Desikan; Benedicte A. Lie; Srdjan Djurovic; Anders M. Dale

Converging evidence implicates immune abnormalities in schizophrenia (SCZ), and recent genome-wide association studies (GWAS) have identified immune-related single-nucleotide polymorphisms (SNPs) associated with SCZ. Using the conditional false discovery rate (FDR) approach, we evaluated pleiotropy in SNPs associated with SCZ (n=21 856) and multiple sclerosis (MS) (n=43 879), an inflammatory, demyelinating disease of the central nervous system. Because SCZ and bipolar disorder (BD) show substantial clinical and genetic overlap, we also investigated pleiotropy between BD (n=16 731) and MS. We found significant genetic overlap between SCZ and MS and identified 21 independent loci associated with SCZ, conditioned on association with MS. This enrichment was driven by the major histocompatibility complex (MHC). Importantly, we detected the involvement of the same human leukocyte antigen (HLA) alleles in both SCZ and MS, but with an opposite directionality of effect of associated HLA alleles (that is, MS risk alleles were associated with decreased SCZ risk). In contrast, we found no genetic overlap between BD and MS. Considered together, our findings demonstrate genetic pleiotropy between SCZ and MS and suggest that the MHC signals may differentiate SCZ from BD susceptibility.


Annals of Neurology | 2012

Risk for Myasthenia Gravis Maps to a (151)Pro -> Ala Change in TNIP1 and to Human Leukocyte Antigen-B*08

Peter K. Gregersen; Roman Kosoy; Annette Lee; Janine A. Lamb; Jon Sussman; David McKee; Kim R. Simpfendorfer; Ritva Pirskanen-Matell; Frederik Piehl; Qiang Pan-Hammarström; Jan J. Verschuuren; Maarten J. Titulaer; Erik H. Niks; Alexander Marx; Philipp Ströbel; Björn Tackenberg; Michael Pütz; Angelina Maniaol; Ahmed Elsais; Chantal Tallaksen; Hanne F. Harbo; Benedicte A. Lie; Soumya Raychaudhuri; Paul I. W. de Bakker; Arthur Melms; Henri Jean Garchon; Nicholas Willcox; Lennart Hammarström; Michael F. Seldin

The objective of this study is to comprehensively define the genetic basis of early onset myasthenia gravis (EOMG).


Hepatology | 2007

Cholangiocarcinoma in primary sclerosing cholangitis is associated with NKG2D polymorphisms

Espen Melum; Tom H. Karlsen; Erik Schrumpf; Annika Bergquist; Erik Thorsby; Kirsten Muri Boberg; Benedicte A. Lie

Primary sclerosing cholangitis (PSC) is often complicated by the development of cholangiocarcinoma (CCA). Genetic variation of natural killer cell receptor G2D (NKG2D) has been associated with cancer susceptibility. An important ligand for NKG2D, major histocompatibility complex class I chain‐related molecule A (MICA), serves as a marker of cellular stress. The 5.1 allele of the gene encoding MICA has been associated with PSC. In this study, we aimed to investigate the influence of genetic variations in the NKG2D‐MICA receptor‐ligand pair on the risk of CCA in patients with PSC. Seven single nucleotide polymorphisms (SNPs) covering the NKG2D gene were genotyped in 365 Scandinavian PSC patients and 368 healthy controls with TaqMan technology. Genotype data on the MICA 5.1 variant were available from previous studies. Forty‐nine of the PSC patients (13.6%) had developed CCA at the time of study. Two of the NKG2D SNPs were associated with an increased risk of CCA: rs11053781 [odds ratio (OR) = 2.08, 95% confidence interval (CI) = 1.31‐3.29, corrected P (Pc) = 0.011] and rs2617167 (OR = 2.32, 95% CI = 1.47‐3.66, Pc = 0.0020). Carriership of the MICA 5.1 allele was associated with resistance against CCA (OR = 0.43, 95% CI = 0.20‐0.95, not corrected P = 0.032). Conclusion: Our results show that genetic variants of the NKG2D receptor are associated with development of CCA in PSC patients. This suggests that interaction between NKG2D and MICA is involved in protection against CCA in PSC. Patients who are homozygous for the nonrisk alleles are unlikely to develop CCA; this finding could be helpful in identifying PSC patients with a low CCA risk. (HEPATOLOGY 2007.)

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Marte K. Viken

Oslo University Hospital

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Dag E. Undlien

Oslo University Hospital

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Hanne F. Harbo

Oslo University Hospital

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Tom H. Karlsen

Oslo University Hospital

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