生物
细胞生物学
斑马鱼
失调
微生物群
前蛋白转化酶
胰腺
小岛
细胞
胰岛素
微生物学
生物化学
内分泌学
胆固醇
生物信息学
脂蛋白
基因
低密度脂蛋白受体
作者
Jennifer Hampton Hill,Michelle S. Massaquoi,Emily Goers Sweeney,Elena S. Wall,Philip Jahl,Rickesha Bell,Karen Kallio,Daniel S. Derrick,L. Charles Murtaugh,Raghuveer Parthasarathy,S.J. Remington,June L. Round,Karen Guillemin
出处
期刊:Cell Metabolism
[Cell Press]
日期:2022-11-01
卷期号:34 (11): 1779-1791.e9
被引量:3
标识
DOI:10.1016/j.cmet.2022.09.001
摘要
Microbiome dysbiosis is a feature of diabetes, but how microbial products influence insulin production is poorly understood. We report the mechanism of BefA, a microbiome-derived protein that increases proliferation of insulin-producing β cells during development in gnotobiotic zebrafish and mice. BefA disseminates systemically by multiple anatomic routes to act directly on pancreatic islets. We detail BefA's atomic structure, containing a lipid-binding SYLF domain, and demonstrate that it permeabilizes synthetic liposomes and bacterial membranes. A BefA mutant impaired in membrane disruption fails to expand β cells, whereas the pore-forming host defense protein, Reg3, stimulates β cell proliferation. Our work demonstrates that membrane permeabilization by microbiome-derived and host defense proteins is necessary and sufficient for β cell expansion during pancreas development, potentially connecting microbiome composition with diabetes risk.
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