4.6 Article

Genome-Wide Association Study in Asian Populations Identifies Variants in ETS1 and WDFY4 Associated with Systemic Lupus Erythematosus

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PLOS GENETICS
卷 6, 期 2, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pgen.1000841

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资金

  1. Research Grant Council of the Hong Kong Government [GRF HKU781709M]
  2. Dr Cheng Yu Tung's Fellowship, University of Hong Kong
  3. Edward the Sai Kim Hotung Paediatric Education and Research Fund
  4. University Postgraduate Studentship
  5. National Basic Research Program of China [2007CB947900]
  6. National High Technology Research and Development Program of China [2007AA02Z123]
  7. National Natural Science Foundation of China [30700734, 30830089]
  8. Key Basic Program of the Shanghai Commission of Science and Technology [06JC14050, 08JC1414700]
  9. Program of Shanghai Subject [07XD14021]
  10. National Research Council of Thailand

向作者/读者索取更多资源

Systemic lupus erythematosus is a complex and potentially fatal autoimmune disease, characterized by autoantibody production and multi-organ damage. By a genome-wide association study (320 patients and 1,500 controls) and subsequent replication altogether involving a total of 3,300 Asian SLE patients from Hong Kong, Mainland China, and Thailand, as well as 4,200 ethnically and geographically matched controls, genetic variants in ETS1 and WDFY4 were found to be associated with SLE (ETS1: rs1128334, P = 2.33x10(-11), OR = 1.29; WDFY4: rs7097397, P = 8.15x10(-12), OR = 1.30). ETS1 encodes for a transcription factor known to be involved in a wide range of immune functions, including Th17 cell development and terminal differentiation of B lymphocytes. SNP rs1128334 is located in the 3'-UTR of ETS1, and allelic expression analysis from peripheral blood mononuclear cells showed significantly lower expression level from the risk allele. WDFY4 is a conserved protein with unknown function, but is predominantly expressed in primary and secondary immune tissues, and rs7097397 in WDFY4 changes an arginine residue to glutamine (R1816Q) in this protein. Our study also confirmed association of the HLA locus, STAT4, TNFSF4, BLK, BANK1, IRF5, and TNFAIP3 with SLE in Asians. These new genetic findings may help us to gain a better understanding of the disease and the functions of the genes involved.

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