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IRE1–XBP1 pathway regulates oxidative proinsulin folding in pancreatic β cells

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In mammalian pancreatic β cells, the IRE1α–XBP1 pathway is constitutively and highly activated under physiological conditions. To elucidate the precise role of this pathway, we constructed β cell–specific Ire1α conditional knockout (CKO) mice and established insulinoma cell lines in which Ire1α was deleted using the Cre–loxP system. Ire1α CKO mice showed the typical diabetic phenotype including impaired glycemic control and defects in insulin biosynthesis postnatally at 4–20 weeks. Ire1α deletion in pancreatic β cells in mice and insulinoma cells resulted in decreased insulin secretion, decreased insulin and proinsulin contents in cells, and decreased oxidative folding of proinsulin along with decreased expression of five protein disulfide isomerases (PDIs): PDI, PDIR, P5, ERp44, and ERp46. Reconstitution of the IRE1α–XBP1 pathway restored the proinsulin and insulin contents, insulin secretion, and expression of the five PDIs, indicating that IRE1α functions as a key regulator of the induction of catalysts for the oxidative folding of proinsulin in pancreatic β cells.
机译:在哺乳动物胰腺β细胞中,IS1α-XBP1途径在生理条件下组成型和高度活化。为了阐明该途径的确切作用,我们构建了β细胞特异性IS1α条件淘汰局部(CKO)小鼠和建立的胰岛素瘤细胞系,其中使用CRE-LOXP系统删除了IS1α。 IS1αCKO小鼠显示典型的糖尿病表型,包括在4-20周后出现后胰岛素的血糖控制和胰岛素生物合成的缺陷。在小鼠和胰岛素细胞中胰腺β细胞中的Ire1α缺失导致胰岛素分泌降低,细胞中的胰岛素和胰岛素含量降低,并降低了胰岛素的氧化折叠,随着五种蛋白二硫化物异构酶的表达减少(PDI):PDI,PDIR,P5, ERP44和ERP46。重构IRE1α-XBP1途径恢复了胰岛素蛋白和胰岛素含量,胰岛素分泌和五种PDI的表达,表明IRE1α用作胰岛素氧化β细胞中氧化折叠催化剂的催化剂的关键调节器。

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