Division of Metabolism, Endocrinology and Diabetes, University of Michigan Medical Center, Ann Arbor, MI.
Department of Endocrinology and Metabolism, Tianjin Medical University General Hospital, Tianjin, China.
Diabetes. 2022 Mar 1;71(3):440-452. doi: 10.2337/db21-0638.
In the endoplasmic reticulum (ER), the translocation-associated protein complex (TRAP), also called signal sequence receptor (SSR), includes four integral membrane proteins TRAPα/SSR1, TRAPβ/SSR2, and TRAPδ/SSR4 with the bulk of their extramembranous portions primarily in the ER lumen, whereas the extramembranous portion of TRAPγ/SSR3 is primarily cytosolic. Individually diminished expression of either TRAPα/SSR1, TRAPβ/SSR2, or TRAPδ/SSR4 mRNA is known in each case to lower TRAPα/SSR1 protein levels, leading to impaired proinsulin biosynthesis, whereas forced expression of TRAPα/SSR1 at least partially suppresses the proinsulin biosynthetic defect. Here, we report that diminished TRAPγ/SSR3 expression in pancreatic β-cells leaves TRAPα/SSR1 levels unaffected while nevertheless inhibiting cotranslational and posttranslational translocation of preproinsulin into the ER. Crucially, acute exposure to high glucose leads to a rapid upregulation of both TRAPγ/SSR3 and proinsulin protein without change in the respective mRNA levels, as observed in cultured rodent β-cell lines and confirmed in human islets. Strikingly, pancreatic β-cells with suppressed TRAPγ/SSR3 expression are blocked in glucose-dependent upregulation of proinsulin (or insulin) biosynthesis. Most remarkably, overexpression of TRAPγ/SSR3 in control β-cells raises proinsulin levels, even without boosting extracellular glucose. The data suggest the possibility that TRAPγ/SSR3 may fulfill a rate-limiting function in preproinsulin translocation across the ER membrane for proinsulin biosynthesis.
在内质网 (ER) 中,易位相关蛋白复合物 (TRAP),也称为信号序列受体 (SSR),包括四个整合膜蛋白 TRAPα/SSR1、TRAPβ/SSR2 和 TRAPδ/SSR4,其大部分跨膜部分主要位于 ER 腔中,而 TRAPγ/SSR3 的跨膜部分主要位于细胞质中。已知每种情况下,TRAPα/SSR1、TRAPβ/SSR2 或 TRAPδ/SSR4 mRNA 的表达单独减少都会降低 TRAPα/SSR1 蛋白水平,导致前胰岛素生物合成受损,而 TRAPα/SSR1 的强制表达至少部分抑制了前胰岛素生物合成缺陷。在这里,我们报告说,胰腺 β 细胞中 TRAPγ/SSR3 的表达减少不会影响 TRAPα/SSR1 的水平,尽管它抑制了前胰岛素原共翻译和翻译后进入 ER 的易位。至关重要的是,急性暴露于高葡萄糖会导致 TRAPγ/SSR3 和前胰岛素蛋白的快速上调,而相应的 mRNA 水平没有变化,正如在培养的啮齿动物 β 细胞系中观察到的和在人胰岛中证实的那样。引人注目的是,TRAPγ/SSR3 表达受抑制的胰腺 β 细胞被阻止了葡萄糖依赖性的前胰岛素(或胰岛素)生物合成的上调。最显著的是,在对照 β 细胞中转染 TRAPγ/SSR3 会升高前胰岛素水平,即使没有提高细胞外葡萄糖。数据表明,TRAPγ/SSR3 可能在跨内质网膜的前胰岛素原易位中发挥限速作用,以进行前胰岛素生物合成。