Exome Chip Analyses and Genetic Risk for IgA Nephropathy among Han Chinese

Author:

Zhou Xu-jieORCID,Tsoi Lam C.,Hu Yong,Patrick Matthew T.,He Kevin,Berthier Celine C.,Li Yanming,Wang Yan-na,Qi Yuan-yuan,Zhang Yue-miao,Gan TingORCID,Li Yang,Hou Ping,Liu Li-jun,Shi Su-fang,Lv Ji-cheng,Xu Hu-ji,Zhang Hong

Abstract

Background and objectivesIgA nephropathy is the most common form of primary GN worldwide. The evidence of geographic and ethnic differences, as well as familial aggregation of the disease, supports a strong genetic contribution to IgA nephropathy. Evidence for genetic factors in IgA nephropathy comes also from genome-wide association patient-control studies. However, few studies have systematically evaluated the contribution of coding variation in IgA nephropathy.Design, setting, participants, & measurementsWe performed a two-stage exome chip–based association study in 13,242 samples, including 3363 patients with IgA nephropathy and 9879 healthy controls of Han Chinese ancestry. Common variant functional annotation, gene-based low-frequency variants analysis, differential mRNA expression, and gene network integration were also explored.ResultsWe identified three non-HLA gene regions (FBXL21, CCR6, and STAT3) and one HLA gene region (GABBR1) with suggestive significance (Pmeta<5×10−5) in single-variant associations. These novel non-HLA variants were annotated as expression-associated single-nucleotide polymorphisms and were located in enhancer regions enriched in histone marks H3K4me1 in primary B cells. Gene-based low-frequency variants analysis suggests CFB as another potential susceptibility gene. Further combined expression and network integration suggested that the five novel susceptibility genes, TGFBI, CCR6, STAT3, GABBR1, and CFB, were involved in IgA nephropathy.ConclusionsFive novel gene regions with suggestive significance for IgA nephropathy were identified and shed new light for further mechanism investigation.

Funder

Beijing Natural Science Foundation

Beijing Nova Program Interdisciplinary Cooperation Project

Beijing Youth Top-notch Talent Support Program

Chinese Academy of Medical Sciences Innovation Fund for Medical Sciences

Clinical Medicine Plus X-Young Scholars Project of Peking University

Fok Ying Tung Education Foundation

National Natural Science Foundation of China

Natural Science Foundation for Innovation Research Group of China

the Training Program of the Major Research Plan of the National Natural Science Foundation of China

the University of Michigan Health System–Peking University Health Science Center Joint Institute for Translational and Clinical Research

Publisher

American Society of Nephrology (ASN)

Subject

Transplantation,Nephrology,Critical Care and Intensive Care Medicine,Epidemiology

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3. Candidate Genes for IgA Nephropathy in Pediatric Patients: Exome-Wide Association Study;International Journal of Molecular Sciences;2023-11-05

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