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人类 STAT3 基因突变通过 CD8+T 细胞耐受缺陷促进 1 型糖尿病。

A human mutation in STAT3 promotes type 1 diabetes through a defect in CD8+ T cell tolerance.

机构信息

Diabetes Center, University of California, San Francisco, San Francisco, CA.

Department of Medicine, University of California, San Francisco, San Francisco, CA.

出版信息

J Exp Med. 2021 Aug 2;218(8). doi: 10.1084/jem.20210759. Epub 2021 Jun 11.

Abstract

Naturally occurring cases of monogenic type 1 diabetes (T1D) help establish direct mechanisms driving this complex autoimmune disease. A recently identified de novo germline gain-of-function (GOF) mutation in the transcriptional regulator STAT3 was found to cause neonatal T1D. We engineered a novel knock-in mouse incorporating this highly diabetogenic human STAT3 mutation (K392R) and found that these mice recapitulated the human autoimmune diabetes phenotype. Paired single-cell TCR and RNA sequencing revealed that STAT3-GOF drives proliferation and clonal expansion of effector CD8+ cells that resist terminal exhaustion. Single-cell ATAC-seq showed that these effector T cells are epigenetically distinct and have differential chromatin architecture induced by STAT3-GOF. Analysis of islet TCR clonotypes revealed a CD8+ cell reacting against known antigen IGRP, and STAT3-GOF in an IGRP-reactive TCR transgenic model demonstrated that STAT3-GOF intrinsic to CD8+ cells is sufficient to accelerate diabetes onset. Altogether, these findings reveal a diabetogenic CD8+ T cell response that is restrained in the presence of normal STAT3 activity and drives diabetes pathogenesis.

摘要

天然发生的单基因 1 型糖尿病(T1D)病例有助于确定导致这种复杂自身免疫性疾病的直接机制。最近在转录调节剂 STAT3 中发现了一个新的从头种系获得性功能获得(GOF)突变,该突变可导致新生儿 T1D。我们构建了一种新型敲入小鼠,该小鼠整合了这种高度致糖尿病的人类 STAT3 突变(K392R),并发现这些小鼠重现了人类自身免疫性糖尿病表型。配对的单细胞 TCR 和 RNA 测序表明,STAT3-GOF 驱动效应性 CD8+细胞的增殖和克隆扩增,这些细胞抵抗终末衰竭。单细胞 ATAC-seq 表明,这些效应 T 细胞在表观遗传学上是不同的,并且由 STAT3-GOF 诱导了不同的染色质结构。胰岛 TCR 克隆型分析显示 CD8+细胞对已知抗原 IGRP 发生反应,在 IGRP 反应性 TCR 转基因模型中,STAT3-GOF 证明 CD8+细胞内固有 STAT3-GOF 足以加速糖尿病的发生。总之,这些发现揭示了一种致糖尿病的 CD8+T 细胞反应,在正常 STAT3 活性存在下受到限制,并驱动糖尿病发病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d790/8203485/d2114e79e83d/JEM_20210759_GA.jpg

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