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Incretin-stimulated interaction between β-cell Kv1.5 and Kvβ2 channel proteins involves acetylation/deacetylation by CBP/SirT1

机译:β细胞Kv1.5和Kvβ2通道蛋白之间的肠胃泌素刺激的相互作用涉及CBP / SirT1的乙酰化/去乙酰化

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pThe incretins, GIP (glucose-dependent insulinotropic polypeptide) and GLP-1 (glucagon-like peptide-1) are gastrointestinal hormones conferring a number of beneficial effects on β-cell secretion, survival and proliferation. In a previous study, it was demonstrated that delayed rectifier channel protein Kv2.1 contributes to β-cell apoptosis and that the prosurvival effects of incretins involve Kv2.1 PTMs (post-translational modifications), including phosphorylation and acetylation. Since Kv1.5 overexpression was also shown to stimulate β-cell death, the present study was initiated in order to determine whether incretins modulate Kv1.5α–Kvβ2 interaction via PTM and the mechanisms involved. GIP and GLP-1 reduced apoptosis in INS-1 β-cells (clone 832/13) overexpressing Kv1.5, and RNAi (RNA interference)-mediated knockdown of endogenous Kv1.5 attenuated apoptotic β-cell death. Both GIP and GLP-1 increased phosphorylation and acetylation of Kv1.5 and its Kvβ2 protein subunit, leading to their enhanced interaction. Further studies demonstrated that CBP [CREB (cAMP-response-element-binding protein)-binding protein]/SirT1 mediated acetylation/deacetylation and interaction between Kvβ2 and Kv1.5 in response to GIP or GLP-1. Incretin regulation of β-cell function therefore involves the acetylation of multiple Kvα and Kvβ subunits./p
机译:>肠降血糖素,GIP(葡萄糖依赖性促胰岛素多肽)和GLP-1(胰高血糖素样肽-1)是胃肠激素,对β细胞的分泌,存活和增殖具有许多有益作用。在先前的研究中,已证明延迟的整流通道蛋白Kv2.1有助于β细胞凋亡,肠降血糖素的促生存作用涉及Kv2.1 PTM(翻译后修饰),包括磷酸化和乙酰化。由于还显示了Kv1.5过表达会刺激β细胞死亡,因此开始本研究是为了确定肠降血糖素是否通过PTM及其相关机制调节Kv1.5α-Kvβ2相互作用。 GIP和GLP-1减少了过表达Kv1.5的INS-1β细胞(克隆832/13)的凋亡,而RNAi(RNA干扰)介导的内源性Kv1.5的敲低减弱了凋亡的β细胞死亡。 GIP和GLP-1都增加了Kv1.5及其Kvβ2蛋白亚基的磷酸化和乙酰化,从而增强了它们的相互作用。进一步的研究表明,CBP [CREB(cAMP-反应-元素-结合蛋白)结合蛋白] / SirT1介导了乙酰化/去乙酰化以及Kvβ2和Kv1.5之间的相互作用,以响应GIP或GLP-1。因此,肠抑素对β细胞功能的调节涉及多个Kvα和Kvβ亚基的乙酰化。

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