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Dive into the research topics where Jennifer A. Kelly is active.

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Featured researches published by Jennifer A. Kelly.


Nature Genetics | 2008

Genome-wide association scan in women with systemic lupus erythematosus identifies susceptibility variants in ITGAM , PXK , KIAA1542 and other loci

John B. Harley; Marta E. Alarcón-Riquelme; Lindsey A. Criswell; Chaim O. Jacob; Robert P. Kimberly; Kathy L. Moser; Betty P. Tsao; Timothy J. Vyse; Carl D. Langefeld; Swapan K. Nath; Joel M. Guthridge; Beth L. Cobb; Daniel B. Mirel; Miranda C. Marion; Adrienne H. Williams; Jasmin Divers; Wei Wang; Summer G Frank; Bahram Namjou; Stacey Gabriel; Annette Lee; Peter K. Gregersen; Timothy W. Behrens; Kimberly E. Taylor; Michelle M. A. Fernando; Raphael Zidovetzki; Patrick M. Gaffney; Jeffrey C. Edberg; John D. Rioux; Joshua O. Ojwang

Systemic lupus erythematosus (SLE) is a common systemic autoimmune disease with complex etiology but strong clustering in families (λS = ∼30). We performed a genome-wide association scan using 317,501 SNPs in 720 women of European ancestry with SLE and in 2,337 controls, and we genotyped consistently associated SNPs in two additional independent sample sets totaling 1,846 affected women and 1,825 controls. Aside from the expected strong association between SLE and the HLA region on chromosome 6p21 and the previously confirmed non-HLA locus IRF5 on chromosome 7q32, we found evidence of association with replication (1.1 × 10−7 < Poverall < 1.6 × 10−23; odds ratio = 0.82–1.62) in four regions: 16p11.2 (ITGAM), 11p15.5 (KIAA1542), 3p14.3 (PXK) and 1q25.1 (rs10798269). We also found evidence for association (P < 1 × 10−5) at FCGR2A, PTPN22 and STAT4, regions previously associated with SLE and other autoimmune diseases, as well as at ⩾9 other loci (P < 2 × 10−7). Our results show that numerous genes, some with known immune-related functions, predispose to SLE.


Genes and Immunity | 2009

Recent insights into the genetic basis of systemic lupus erythematosus

Kathy L. Moser; Jennifer A. Kelly; Christopher J. Lessard; John B. Harley

Genetic variation was first shown to be important in systemic lupus erythematosus (SLE or lupus) in the 1970s with associations in the human leukocyte antigen region. Almost four decades later, and with the help of increasingly powerful genetic approaches, more than 25 genes are now known to contribute to the mechanisms that predispose individuals to lupus. Over half of these loci have been discovered in the past 2 years, underscoring the extraordinary success of genome-wide association approaches in SLE. Well-established risk factors include alleles in the major histocompatibility complex region (multiple genes), IRF5, ITGAM, STAT4, BLK, BANK1, PDCD1, PTPN22, TNFSF4, TNFAIP3, SPP1, some of the Fcγ receptors, and deficiencies in several complement components, including C1q, C4 and C2. As reviewed here, many susceptibility genes fall into key pathways that are consistent with previous studies implicating immune complexes, host immune signal transduction and interferon pathways in the pathogenesis of SLE. Other loci have no known function or apparent immunological role and have the potential to reveal novel disease mechanisms. Certainly, as our understanding of the genetic etiology of SLE continues to mature, important new opportunities will emerge for developing more effective diagnostic and clinical management tools for this complex autoimmune disease.


Nature Genetics | 2008

A nonsynonymous functional variant in integrin-|[alpha]|M (encoded by ITGAM) is associated with systemic lupus erythematosus

Swapan K. Nath; Shizhong Han; Xana Kim-Howard; Jennifer A. Kelly; Parvathi Viswanathan; Gary S. Gilkeson; Wei Chen; Cheng Zhu; Rodger P. McEver; Robert P. Kimberly; Marta E. Alarcón-Riquelme; Timothy J. Vyse; Quan Zhen Li; Edward K. Wakeland; Joan T. Merrill; Judith A. James; Kenneth M. Kaufman; Joel M. Guthridge; John B. Harley

We identified and replicated an association between ITGAM (CD11b) at 16p11.2 and risk of systemic lupus erythematosus (SLE) in 3,818 individuals of European descent. The strongest association was at a nonsynonymous SNP, rs1143679 (P = 1.7 × 10−17, odds ratio = 1.78). We further replicated this association in two independent samples of individuals of African descent (P = 0.0002 and 0.003; overall meta-analysis P = 6.9 × 10−22). The genetic association between ITGAM and SLE implicates the αMβ2-integrin adhesion pathway in disease development.


Nature Reviews Genetics | 2009

Genetic susceptibility to SLE: new insights from fine mapping and genome-wide association studies

Isaac T.W. Harley; Kenneth M. Kaufman; Carl D. Langefeld; John B. Harley; Jennifer A. Kelly

Genome-wide association studies and fine mapping of candidate regions have rapidly advanced our understanding of the genetic basis of systemic lupus erythematosus (SLE). More than 20 robust associations have now been identified and confirmed, providing insights at the molecular level that refine our understanding of the involvement of host immune response processes. In addition, genes with unknown roles in SLE pathophysiology have been identified. These findings may provide new routes towards improved clinical management of this complex disease.


Arthritis & Rheumatism | 2008

Association of the IRF5 risk haplotype with high serum interferon-α activity in systemic lupus erythematosus patients

Timothy B. Niewold; Jennifer A. Kelly; Marie H. Flesch; Luis R. Espinoza; John B. Harley; Mary K. Crow

OBJECTIVE A haplotype of the interferon regulatory factor 5 (IRF5) gene has been associated with the risk of developing systemic lupus erythematosus (SLE), and our previous studies have demonstrated that high levels of serum interferon-alpha (IFNalpha) activity are a heritable risk factor for SLE. The aim of this study was to determine whether the IRF5 SLE risk haplotype mediates the risk of SLE by predisposing patients to the development of high levels of serum IFNalpha activity. METHODS IFNalpha levels in 199 SLE patients of European and Hispanic ancestry were measured with a sensitive functional reporter cell assay. The rs2004640, rs3807306, rs10488631, and rs2280714 single-nucleotide polymorphisms (SNPs) in IRF5 were genotyped in these patients. Haplotypes were categorized as SLE risk, neutral, or protective based on published data. RESULTS SLE patients with risk/risk and risk/neutral IRF5 genotypes had higher serum IFNalpha activity than did those with protective/protective and neutral/protective genotypes (P = 0.025). This differential effect of IRF5 genotype on serum IFNalpha levels was driven largely by SLE patients who were positive for either anti-RNA binding protein (anti-RBP) or anti-double-stranded DNA (anti-dsDNA) autoantibodies (P = 0.012 for risk/risk or risk/neutral versus protective/protective or neutral/protective). The rs3807306 genotype was independently associated with high serum IFNalpha in this autoantibody group. We found no difference in IFNalpha activity according to IRF5 genotype in patients lacking either type of autoantibody or in patients positive for both classes of autoantibody. CONCLUSION The IRF5 SLE risk haplotype is associated with higher serum IFNalpha activity in SLE patients, and this effect is most prominent in patients positive for either anti-RBP or anti-dsDNA autoantibodies. This study demonstrates the biologic relevance of the SLE risk haplotype of IRF5 at the protein level.


Arthritis & Rheumatism | 2008

Klinefelter's syndrome (47,XXY) in male systemic lupus erythematosus patients: Support for the notion of a gene-dose effect from the X chromosome

R. Hal Scofield; Gail R. Bruner; Bahram Namjou; Robert P. Kimberly; Rosalind Ramsey-Goldman; Michelle Petri; John D. Reveille; Graciela S. Alarcón; Luis M. Vilá; Jeff Reid; Bryan Harris; Shibo Li; Jennifer A. Kelly; John B. Harley

OBJECTIVE Systemic lupus erythematosus (SLE) is a systemic autoimmune disease that predominantly affects women. Despite isolated reports of patients with coexisting Klinefelters syndrome (47,XXY) and SLE, no association of Klinefelters syndrome with SLE or any other autoimmune disease has been established. The present study was undertaken to investigate the prevalence of Klinefelters syndrome in a large population of patients with SLE. METHODS Sex chromosome genotyping was performed in 981 SLE patients, of whom 213 were men. A first group of 844 SLE patients from 378 multiplex families and a second group of 137 men with nonfamilial SLE were evaluated. In selected cases, chromosomes were enumerated by fluorescence in situ hybridization (FISH) and karyotyping in transformed B cell lines. RESULTS Of 213 men with SLE, 5 had Klinefelters syndrome (1 in 43). Four of them were heterozygous at X markers, and Klinefelters syndrome was confirmed by FISH and karyotyping in the fifth. An overall rate of 47,XXY of 235 per 10,000 male SLE patients was found (95% confidence interval 77-539), a dramatic increase over the known prevalence of Klinefelters syndrome in an unselected population (17 per 10,000 live male births). Asking men with SLE about fertility was highly sensitive (100%) for Klinefelters syndrome. All 768 women with SLE were heterozygous at X. CONCLUSION The frequency of Klinefelters syndrome (47,XXY), often subclinical, is increased in men with SLE by approximately 14-fold compared with its prevalence in men without SLE. Diagnostic vigilance for 47,XXY in male patients with SLE is warranted. These data are the first to show an association of Klinefelters syndrome with an autoimmune disease found predominantly in women. The risk of SLE in men with Klinefelters syndrome is predicted to be similar to the risk in normal women with 46,XX and approximately 14-fold higher than in men with 46,XY, consistent with the notion that SLE susceptibility is partly explained by an X chromosome gene-dose effect.


Proceedings of the National Academy of Sciences of the United States of America | 2009

Identification of IRAK1 as a risk gene with critical role in the pathogenesis of systemic lupus erythematosus

Chaim O. Jacob; Jiankun Zhu; Don L. Armstrong; Mei Yan; Jie Han; Xin J. Zhou; James Thomas; Andreas Reiff; Barry L. Myones; Joshua O. Ojwang; Kenneth M. Kaufman; Marisa S. Klein-Gitelman; Deborah McCurdy; Linda Wagner-Weiner; Earl D. Silverman; Julie T. Ziegler; Jennifer A. Kelly; Joan T. Merrill; John B. Harley; Rosalind Ramsey-Goldman; Luis M. Vilá; Sang-Cheol Bae; Timothy J. Vyse; Gary S. Gilkeson; Patrick M. Gaffney; Kathy L. Moser; Carl D. Langefeld; Raphael Zidovetzki; Chandra Mohan

A combined forward and reverse genetic approach was undertaken to test the candidacy of IRAK1 (interleukin-1 receptor associated kinase-1) as an X chromosome-encoded risk factor for systemic lupus erythematosus (SLE). In studying ≈5,000 subjects and healthy controls, 5 SNPs spanning the IRAK1 gene showed disease association (P values reaching 10−10, odds ratio >1.5) in both adult- and childhood-onset SLE, in 4 different ethnic groups, with a 4 SNP haplotype (GGGG) being strongly associated with the disease. The functional role of IRAK1 was next examined by using congenic mouse models bearing the disease loci: Sle1 or Sle3. IRAK1 deficiency abrogated all lupus-associated phenotypes, including IgM and IgG autoantibodies, lymphocytic activation, and renal disease in both models. In addition, the absence of IRAK1 reversed the dendritic cell “hyperactivity” associated with Sle3. Collectively, the forward genetic studies in human SLE and the mechanistic studies in mouse models establish IRAK1 as a disease gene in lupus, capable of modulating at least 2 key checkpoints in disease development. This demonstration of an X chromosome gene as a disease susceptibility factor in human SLE raises the possibility that the gender difference in SLE may in part be attributed to sex chromosome genes.


Nature Genetics | 2013

Variants at multiple loci implicated in both innate and adaptive immune responses are associated with Sjögren’s syndrome

Christopher J. Lessard; He Li; Indra Adrianto; John A. Ice; Astrid Rasmussen; Kiely Grundahl; Jennifer A. Kelly; Mikhail G. Dozmorov; Corinne Miceli-Richard; Simon Bowman; Susan Lester; Per Eriksson; Maija-Leena Eloranta; Johan G. Brun; Lasse G. Gøransson; Erna Harboe; Joel M. Guthridge; Kenneth M. Kaufman; Marika Kvarnström; Helmi Jazebi; Deborah S. Cunninghame Graham; Martha E. Grandits; Abu N. M. Nazmul-Hossain; Ketan Patel; Adam Adler; Jacen S. Maier-Moore; A. Darise Farris; Michael T. Brennan; James A. Lessard; James Chodosh

Sjögrens syndrome is a common autoimmune disease (affecting ∼0.7% of European Americans) that typically presents as keratoconjunctivitis sicca and xerostomia. Here we report results of a large-scale association study of Sjögrens syndrome. In addition to strong association within the human leukocyte antigen (HLA) region at 6p21 (Pmeta = 7.65 × 10−114), we establish associations with IRF5-TNPO3 (Pmeta = 2.73 × 10−19), STAT4 (Pmeta = 6.80 × 10−15), IL12A (Pmeta = 1.17 × 10−10), FAM167A-BLK (Pmeta = 4.97 × 10−10), DDX6-CXCR5 (Pmeta = 1.10 × 10−8) and TNIP1 (Pmeta = 3.30 × 10−8). We also observed suggestive associations (Pmeta < 5 × 10−5) with variants in 29 other regions, including TNFAIP3, PTTG1, PRDM1, DGKQ, FCGR2A, IRAK1BP1, ITSN2 and PHIP, among others. These results highlight the importance of genes that are involved in both innate and adaptive immunity in Sjögrens syndrome.


Nature Genetics | 2011

Association of a functional variant downstream of TNFAIP3 with systemic lupus erythematosus

Indra Adrianto; Feng Wen; Amanda Templeton; Graham B. Wiley; Jarrod B. King; Christopher J. Lessard; Jared S. Bates; Yanqing Hu; Jennifer A. Kelly; Kenneth M. Kaufman; Joel M. Guthridge; Marta E. Alarcón-Riquelme; Juan-Manuel Anaya; Sang-Cheol Bae; So-Young Bang; Susan A. Boackle; Elizabeth E. Brown; Michelle Petri; Caroline J. Gallant; Rosalind Ramsey-Goldman; John D. Reveille; Luis M. Vilá; Lindsey A. Criswell; Jeffrey C. Edberg; Barry I. Freedman; Peter K. Gregersen; Gary S. Gilkeson; Chaim O. Jacob; Judith A. James; Diane L. Kamen

Systemic lupus erythematosus (SLE, MIM152700) is an autoimmune disease characterized by self-reactive antibodies resulting in systemic inflammation and organ failure. TNFAIP3, encoding the ubiquitin-modifying enzyme A20, is an established susceptibility locus for SLE. By fine mapping and genomic re-sequencing in ethnically diverse populations, we fully characterized the TNFAIP3 risk haplotype and identified a TT>A polymorphic dinucleotide (deletion T followed by a T to A transversion) associated with SLE in subjects of European (P = 1.58 × 10−8, odds ratio = 1.70) and Korean (P = 8.33 × 10−10, odds ratio = 2.54) ancestry. This variant, located in a region of high conservation and regulatory potential, bound a nuclear protein complex composed of NF-κB subunits with reduced avidity. Further, compared with the non-risk haplotype, the haplotype carrying this variant resulted in reduced TNFAIP3 mRNA and A20 protein expression. These results establish this TT>A variant as the most likely functional polymorphism responsible for the association between TNFAIP3 and SLE.


American Journal of Human Genetics | 2000

Genome Scan of Human Systemic Lupus Erythematosus by Regression Modeling: Evidence of Linkage and Epistasis at 4p16-15.2

Courtney Gray-McGuire; Kathy L. Moser; Patrick M. Gaffney; Jennifer A. Kelly; H. Yu; Jane M. Olson; C.M. Jedrey; Kevin B. Jacobs; Robert P. Kimberly; B.R. Neas; Stephen S. Rich; Timothy W. Behrens; John B. Harley

Systemic lupus erythematosus (SLE) is a complex autoimmune disorder involving at least hormonal, environmental, and genetic factors. Familial aggregation, a 2%-3% sibling recurrence rate, monozygotic twin concordance >20%, association with several candidate genes, as well as the results of five genome scans support a genetic component. We present here the results of a genome scan of 126 pedigrees multiplex for SLE, including 469 sibling pairs (affected and unaffected) and 175 affected relative pairs. Using the revised multipoint Haseman-Elston regression technique for concordant and discordant sibling pairs and a conditional logistic regression technique for affected relative pairs, we identify a novel linkage to chromosome 4p16-15.2 (P=.0003 and LOD=3.84) and present evidence of an epistatic interaction between chromosome 4p16-15.2 and chromosome 5p15 in our European American families. We confirm the evidence of linkage to chromosome 4p16-15.2 in European American families using data from an independent pedigree collection. In addition, our data support the published results of three independent studies for nine purportedly linked regions and agree with the previously published results from a subset of these data for three regions. In summary, results from two new analytical techniques establish and confirm linkage with SLE at 4p16-15.2, indicate epistasis between 4p16-15.2 and 5p15, and confirm other linkage effects with SLE that have been reported elsewhere.

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John B. Harley

Cincinnati Children's Hospital Medical Center

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Judith A. James

University of Oklahoma Health Sciences Center

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Kenneth M. Kaufman

Cincinnati Children's Hospital Medical Center

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Patrick M. Gaffney

Oklahoma Medical Research Foundation

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Kathy L. Moser

Oklahoma Medical Research Foundation

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Robert P. Kimberly

University of Alabama at Birmingham

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Gary S. Gilkeson

Medical University of South Carolina

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Michelle Petri

Johns Hopkins University School of Medicine

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