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YIPF5 突变通过内质网应激导致新生儿糖尿病和小头畸形。

YIPF5 mutations cause neonatal diabetes and microcephaly through endoplasmic reticulum stress.

机构信息

Institute of Biomedical and Clinical Science, University of Exeter Medical School, Exeter, United Kingdom.

ULB Center for Diabetes Research and.

出版信息

J Clin Invest. 2020 Dec 1;130(12):6338-6353. doi: 10.1172/JCI141455.

Abstract

Neonatal diabetes is caused by single gene mutations reducing pancreatic β cell number or impairing β cell function. Understanding the genetic basis of rare diabetes subtypes highlights fundamental biological processes in β cells. We identified 6 patients from 5 families with homozygous mutations in the YIPF5 gene, which is involved in trafficking between the endoplasmic reticulum (ER) and the Golgi. All patients had neonatal/early-onset diabetes, severe microcephaly, and epilepsy. YIPF5 is expressed during human brain development, in adult brain and pancreatic islets. We used 3 human β cell models (YIPF5 silencing in EndoC-βH1 cells, YIPF5 knockout and mutation knockin in embryonic stem cells, and patient-derived induced pluripotent stem cells) to investigate the mechanism through which YIPF5 loss of function affects β cells. Loss of YIPF5 function in stem cell-derived islet cells resulted in proinsulin retention in the ER, marked ER stress, and β cell failure. Partial YIPF5 silencing in EndoC-βH1 cells and a patient mutation in stem cells increased the β cell sensitivity to ER stress-induced apoptosis. We report recessive YIPF5 mutations as the genetic cause of a congenital syndrome of microcephaly, epilepsy, and neonatal/early-onset diabetes, highlighting a critical role of YIPF5 in β cells and neurons. We believe this is the first report of mutations disrupting the ER-to-Golgi trafficking, resulting in diabetes.

摘要

新生儿糖尿病是由单一基因突变引起的,这些突变会减少胰腺β细胞的数量或损害β细胞的功能。了解罕见糖尿病亚型的遗传基础,突出了β细胞中基本的生物学过程。我们在 5 个家系的 6 位患者中发现了 YIPF5 基因的纯合突变,该基因参与内质网(ER)和高尔基体之间的运输。所有患者均患有新生儿/早发糖尿病、严重的小头畸形和癫痫。YIPF5 在人类大脑发育过程中、成年大脑和胰岛中表达。我们使用了 3 个人β细胞模型(EndoC-βH1 细胞中 YIPF5 的沉默、胚胎干细胞中的 YIPF5 敲除和突变敲入,以及患者来源的诱导多能干细胞)来研究 YIPF5 功能丧失如何影响β细胞的机制。在干细胞衍生的胰岛细胞中,YIPF5 功能的丧失导致胰岛素原在 ER 中滞留、明显的 ER 应激和β细胞衰竭。EndoC-βH1 细胞中 YIPF5 的部分沉默和干细胞中的患者突变增加了β细胞对 ER 应激诱导的细胞凋亡的敏感性。我们报道了隐性 YIPF5 突变是小头畸形、癫痫和新生儿/早发糖尿病的先天性综合征的遗传原因,突出了 YIPF5 在β细胞和神经元中的关键作用。我们相信这是第一个报道破坏 ER 到高尔基体运输从而导致糖尿病的基因突变的报告。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de01/7685733/8cfc6e63a173/jci-130-141455-g456.jpg

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