胰岛素原
易位
第61节
内质网
生物合成
信号识别粒子
生物
蛋白质亚单位
染色体易位
信号肽
基因
细胞生物学
生物化学
胰岛素
内分泌学
肽序列
作者
Xiaoxi Xu,Thomas W. Bell,Truc Le,Ivy Yan Zhao,Emily M. Walker,Yiqin Wang,Ning Xu,Scott A. Soleimanpour,Holger A. Russ,Ling Qi,Billy Tsai,Ming Liu,Peter Arvan
出处
期刊:Diabetes
[American Diabetes Association]
日期:2024-09-26
摘要
Translocational regulation of proinsulin biosynthesis in pancreatic β-cells is unknown, although several studies have reported an important accessory role for the Translocon-Associated Protein complex to assist preproinsulin delivery into the endoplasmic reticulum via the heterotrimeric Sec61 translocon (comprised of α, β, and γ subunits). The actual protein-conducting channel is the α–subunit encoded either by Sec61A1 or its paralog Sec61A2. Although the underlying channel selectivity for preproinsulin translocation is unknown, almost all studies of Sec61α to date have focused on Sec61α1. There is currently no evidence to suggest that this gene product plays a major role in proinsulin production, whereas genome-wide association studies indicate linkage of Sec61A2 with diabetes. Here, we report that evolutionary differences in mouse preproinsulin signal peptides affect proinsulin biosynthesis. Moreover, we find that although some preproinsulin translocation can proceed through Sec61α1, Sec61α2 has a greater impact on proinsulin biosynthesis in pancreatic β-cells. Remarkably, Sec61α2-translocon deficiency exerts a significant inhibitory effect on the biosynthesis of preproinsulin itself, including a disproportionate increase of full-length nacent chain unreleased from ribosomes. This study not only reveals novel translocational regulation of proinsulin biosynthesis, but also provides a rationale for genetic evidence suggesting an important role of Sec61α2 in maintaining blood glucose homeostasis.
科研通智能强力驱动
Strongly Powered by AbleSci AI