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High Glucose Predisposes Gene Expression and ERK Phosphorylation to Apoptosis and Impaired Glucose-Stimulated Insulin Secretion via the Cytoskeleton

机译:高糖易患基因的表达并通过细胞骨架ERK磷酸化细胞凋亡和糖耐量刺激的胰岛素分泌

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摘要

Chronic high glucose (HG) inflicts glucotoxicity on vulnerable cell types such as pancreatic β cells and contributes to insulin resistance and impaired insulin secretion in diabetic patients. To identify HG-induced cellular aberrations that are candidate mediators of glucotoxicity in pancreatic β cells, we analyzed gene expression in ERoSHK6, a mouse insulin-secreting cell line after chronic HG exposure (six-day exposure to 33.3 mM glucose). Chronic HG exposure which reduced glucose-stimulated insulin secretion (GSIS) increased transcript levels of 185 genes that clustered primarily in 5 processes namely cellular growth and proliferation; cell death; cellular assembly and organization; cell morphology; and cell-to-cell signaling and interaction. The former two were validated by increased apoptosis of ERoSHK6 cells after chronic HG exposure and reaffirmed the vulnerability of β cells to glucotoxicity. The three remaining processes were partially substantiated by changes in cellular morphology and structure, and instigated an investigation of the cytoskeleton and cell-cell adhesion. These studies revealed a depolymerized actin cytoskeleton that lacked actin stress fibers anchored at vinculin-containing focal adhesion sites as well as loss of E-cadherin-mediated cell-cell adherence after exposure to chronic HG, and were concomitant with constitutive ERK1/2 phosphorylation that was refractory to serum and glucose deprivation. Although inhibition of ERK phosphorylation by PD98059 promoted actin polymerization, it increased apoptosis and GSIS impairment. These findings suggest that ERK phosphorylation is a proximate regulator of cellular processes targeted by chronic HG-induced gene expression and that dynamic actin polymerization and depolymerization is important in β cell survival and function. Therefore, chronic HG alters gene expression and signal transduction to predispose the cytoskeleton towards apoptosis and GSIS impairment.
机译:慢性高血糖(HG)对易感细胞类型(例如胰岛β细胞)造成糖毒,并导致糖尿病患者的胰岛素抵抗和胰岛素分泌受损。为了鉴定在胰腺β细胞中可能是糖毒性候选介质的HG诱导的细胞畸变,我们分析了慢性HG暴露(六天暴露于33.3 mM葡萄糖)后小鼠胰岛素分泌细胞系ERoSHK6中的基因表达。慢性HG暴露减少了葡萄糖刺激的胰岛素分泌(GSIS),从而增加了185个基因的转录水平,这些基因主要聚集在5个过程中,即细胞生长和增殖。细胞死亡;细胞组装和组织;细胞形态以及细胞间信号传导和相互作用。前两者通过慢性HG暴露后ERoSHK6细胞凋亡增加而得到证实,并重申了β细胞对糖毒的脆弱性。剩下的三个过程通过细胞形态和结构的改变得到了部分证实,并促进了细胞骨架和细胞间粘附的研究。这些研究揭示了解聚的肌动蛋白细胞骨架,该肌动蛋白细胞骨架缺乏锚定在含蛋白蛋白的粘着斑部位的肌动蛋白应激纤维,并且在暴露于慢性HG后丧失了E-钙粘蛋白介导的细胞粘附,并且伴随着本构性ERK1 / 2磷酸化,对血清和葡萄糖缺乏症难治。尽管PD98059对ERK磷酸化的抑制促进了肌动蛋白的聚合,但它增加了细胞凋亡和GSIS损伤。这些发现表明,ERK磷酸化是由慢性HG诱导的基因表达所靶向的细胞过程的近端调节物,动态肌动蛋白的聚合和解聚对于β细胞的存活和功能很重要。因此,慢性HG改变基因表达和信号转导,使细胞骨架倾向于凋亡和GSIS损伤。

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