首页> 美国卫生研究院文献>PLoS Genetics >GLIS3 a Susceptibility Gene for Type 1 and Type 2 Diabetes Modulates Pancreatic Beta Cell Apoptosis via Regulation of a Splice Variant of the BH3-Only Protein Bim
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GLIS3 a Susceptibility Gene for Type 1 and Type 2 Diabetes Modulates Pancreatic Beta Cell Apoptosis via Regulation of a Splice Variant of the BH3-Only Protein Bim

机译:GLIS31型和2型糖尿病的易感基因通过调节仅BH3蛋白Bim的剪接变异体来调节胰腺β细胞凋亡。

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摘要

Mutations in human Gli-similar (GLIS) 3 protein cause neonatal diabetes. The GLIS3 gene region has also been identified as a susceptibility risk locus for both type 1 and type 2 diabetes. GLIS3 plays a role in the generation of pancreatic beta cells and in insulin gene expression, but there is no information on the role of this gene on beta cell viability and/or susceptibility to immune- and metabolic-induced stress. GLIS3 knockdown (KD) in INS-1E cells, primary FACS-purified rat beta cells, and human islet cells decreased expression of MafA, Ins2, and Glut2 and inhibited glucose oxidation and insulin secretion, confirming the role of this transcription factor for the beta cell differentiated phenotype. GLIS3 KD increased beta cell apoptosis basally and sensitized the cells to death induced by pro-inflammatory cytokines (interleukin 1β + interferon-γ) or palmitate, agents that may contribute to beta cell loss in respectively type 1 and 2 diabetes. The increased cell death was due to activation of the intrinsic (mitochondrial) pathway of apoptosis, as indicated by cytochrome c release to the cytosol, Bax translocation to the mitochondria and activation of caspases 9 and 3. Analysis of the pathways implicated in beta cell apoptosis following GLIS3 KD indicated modulation of alternative splicing of the pro-apoptotic BH3-only protein Bim, favouring expression of the pro-death variant BimS via inhibition of the splicing factor SRp55. KD of Bim abrogated the pro-apoptotic effect of GLIS3 loss of function alone or in combination with cytokines or palmitate. The present data suggest that altered expression of the candidate gene GLIS3 may contribute to both type 1 and 2 type diabetes by favouring beta cell apoptosis. This is mediated by alternative splicing of the pro-apoptotic protein Bim and exacerbated formation of the most pro-apoptotic variant BimS.
机译:人Gli-like(GLIS)3蛋白的突变会导致新生儿糖尿病。 GLIS3基因区域也被确定为1型和2型糖尿病的易感性风险源。 GLIS3在胰腺β细胞的产生和胰岛素基因表达中起作用,但是没有关于该基因在β细胞活力和/或对免疫和代谢诱导的应激的敏感性中的作用的信息。 INS-1E细胞,经FACS纯化的大鼠beta细胞和人胰岛细胞中的GLIS3敲低(KD)降低了MafA,Ins2和Glut2的表达,并抑制了葡萄糖氧化和胰岛素分泌,从而证实了该转录因子在beta中的作用细胞分化表型。 GLIS3 KD基本增加了β细胞的凋亡,并使细胞对由促炎性细胞因子(白介素1β+干扰素-γ)或棕榈酸酯(分别可能导致1型和2型糖尿病的β细胞丢失的因子)诱导的死亡敏感。细胞死亡的增加是由于细胞凋亡的内在(线粒体)途径激活所致,如细胞色素c释放到细胞质,Bax易位到线粒体以及胱天蛋白酶9和3活化所表明的。涉及β细胞凋亡的途径分析继GLIS3 KD之后,表明仅凋亡前BH3蛋白Bim的可变剪接受到调节,从而通过抑制剪接因子SRp55促进了死亡前变体BimS的表达。 Bim的KD消除了GLIS3单独或与细胞因子或棕榈酸酯合用时丧失功能的促凋亡作用。目前的数据表明,候选基因GLIS3表达的改变可能通过促进β细胞凋亡而促进1型和2型糖尿病。这是由促凋亡蛋白Bim的可变剪接和最促凋亡变体BimS的形成加剧所介导的。

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