The IFIH1-A946T risk variant promotes diabetes in a sex-dependent manner

胰岛炎 发病机制 点头 SNP公司 免疫系统 糖尿病 单核苷酸多态性 干扰素 基因 点头老鼠 生物 内分泌学 内科学 医学 免疫学 生物化学 基因型
作者
Amanda J. Stock,Pierina Gonzalez-Paredes,Luciana Previato de Almeida,Stanley D. Kosanke,Srinivaas Chetlur,Hannah Budde,Paul Wakenight,Theresa A. Zwingman,Aaron B.I. Rosen,Eric J. Allenspach,Kathleen J. Millen,Jane H. Buckner,David J. Rawlings,Jacquelyn A. Gorman
出处
期刊: [Cold Spring Harbor Laboratory]
标识
DOI:10.1101/2024.01.20.576482
摘要

ABSTRACT Type 1 diabetes (T1D) is an autoimmune disease in which pancreatic islet β-cells are attacked by the immune system, resulting in insulin deficiency and hyperglycemia. One of the top non-synonymous single-nucleotide polymorphisms (SNP) associated with T1D is in the interferon-induced helicase C domain-containing protein 1 ( IFIH1 ), which encodes an anti-viral cytosolic RNA sensor. This SNP results in an alanine to threonine substitution at amino acid 946 (IFIH1 A946T ) and confers an increased risk for several autoimmune diseases, including T1D. We hypothesized that the IFIH1 A946T risk variant, ( IFIH1 R ) would promote T1D pathogenesis by stimulating type I interferon (IFN I) signaling leading to immune cell alterations. To test this, we developed Ifih1 R knock-in mice on the non-obese diabetic (NOD) mouse background, a spontaneous T1D model. Our results revealed a modest increase in diabetes incidence and insulitis in Ifih1 R compared to non-risk Ifih1 ( Ifih1 NR ) mice and a significant acceleration of diabetes onset in Ifih1 R females. Ifih1 R mice exhibited a significantly enhanced interferon stimulated gene (ISG) signature compared to Ifih1 NR , indicative of increased IFN I signaling. Ifih1 R mice exhibited an increased frequency of plasma cells as well as tissue-dependent changes in the frequency and activation of CD8 + T cells. Our results indicate that IFIH1 R may contribute to T1D pathogenesis by altering the frequency and activation of immune cells. These findings advance our knowledge on the connection between the rs1990760 variant and T1D. Further, these data are the first to demonstrate effects of Ifih1 R in NOD mice, which will be important to consider for the development of therapeutics for T1D.
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