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IGF-I Stimulates CCN5/WISP2 Gene Expression in Pancreatic beta-Cells, Which Promotes Cell Proliferation and Survival Against Streptozotocin

机译:IGF-I刺激胰腺β细胞中的CCN5 / WISP2基因表达,从而促进细胞增殖和对链脲佐菌素的存活。

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摘要

IGF-I is normally produced from hepatocytes and other sources, stimulates protein synthesis, cell survival, and proliferation through receptor-mediated activation of phosphatidylinositol 3-kinase and MAPK, and targets specific molecules within the pancreatic islet cells. The current study was designed to identify novel targets that may mediate its pro-islet actions. Whole-genome cDNA microarray analysis in IGF-I-overexpressing islets identified 82 genes specifically up- or down-regulated. Prominent among them was CCN5/WISP2 whose expression was increased 3- and 2-fold at the mRNA and protein levels. Dual-labeled immunofluorescence revealed that CCN5 expression was low in the beta-cells of wild-type islets but was significantly induced in response to IGF-I overexpression. In vitro treatment of mouse islets with IGF-I increased both CCN5 mRNA and protein levels significantly. To define the role of CCN5 in islet cell biology, we stably overexpressed its cDNA in insulinoma MIN6 cells and detected a 2-fold increase in the proliferation of MIN6-CCN5 compared with that in control cells, which correlated with significant elevations in the levels of cyclin D1 and the phosphorylation of Akt and Erk2. Moreover, MIN6-CCN5 cells were found to be resistant to streptozotocin-induced cell death. Using confocal microscopy and subcellular fractionation, we found that overexpressed CCN5 exhibited cytoplasmic accumulation upon stimulation by high glucose. Our results indicate that CCN5, which is minimally expressed in islet beta-cells, is strongly and directly induced by IGF-I. CCN5 overexpression stimulates the proliferation of insulinoma cells, activates Akt kinase, and inhibits streptozotocin-induced apoptosis, suggesting that increased CCN5 expression contributes to IGF-I-stimulated islet cell growth and/or survival.
机译:IGF-I通常由肝细胞和其他来源产生,通过受体介导的磷脂酰肌醇3-激酶和MAPK的激活来刺激蛋白质合成,细胞存活和增殖,并靶向胰岛细胞内的特定分子。当前的研究旨在确定可能介导其亲岛行动的新目标。在过表达IGF-I的胰岛中进行全基因组cDNA微阵列分析,鉴定出82种基因特别上调或下调。其中最突出的是CCN5 / WISP2,其表达在mRNA和蛋白质水平上分别提高了3倍和2倍。双重标记的免疫荧光显示,在野生型胰岛的β细胞中CCN5表达低,但对IGF-1的过度表达可明显诱导CCN5表达。用IGF-I体外治疗小鼠胰岛可显着增加CCN5 mRNA和蛋白水平。为了确定CCN5在胰岛细胞生物学中的作用,我们稳定地在胰岛素瘤MIN6细胞中过表达了它的cDNA,并且检测到MIN6-CCN5的增殖是对照细胞的2倍,这与CCN5的显着升高有关。细胞周期蛋白D1和Akt和Erk2的磷酸化。而且,发现MIN6-CCN5细胞对链脲佐菌素诱导的细胞死亡具有抗性。使用共聚焦显微镜和亚细胞分级分离,我们发现在高葡萄糖刺激下,过表达的CCN5表现出胞质积累。我们的结果表明,在胰岛β细胞中表达最少的CCN5由IGF-I强烈而直接地诱导。 CCN5的过度表达刺激胰岛素瘤细胞的增殖,激活Akt激酶,并抑制链脲佐菌素诱导的细胞凋亡,表明增加的CCN5表达有助于IGF-1刺激的胰岛细胞生长和/或存活。

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