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Photolysis of cell-permeant caged inositol pyrophosphates controls oscillations of cytosolic calcium in a β-cell line

机译:细胞渗透笼状肌醇焦磷酸盐的光解作用可控制β细胞系中胞质钙的振荡

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摘要

Among many cellular functions, inositol pyrophosphates (PP-InsPs) are metabolic messengers involved in the regulation of glucose uptake, insulin sensitivity, and weight gain. However, their mechanisms of action are still poorly understood. So far, the influence of PP-InsPs on cellular metabolism has been studied by overexpression or knockout/inhibition of relevant metabolizing kinases (IP6Ks, PPIP5Ks). These approaches are, inter alia, limited by time-resolution and potential compensation mechanisms. Here, we describe the synthesis of cell-permeant caged PP-InsPs as tools to rapidly modulate intracellular levels of defined isomers of PP-InsPs in a genetically non-perturbed cellular environment. We show that caged prometabolites readily enter live cells where they are enzymatically converted into still inactive, metabolically stable, photocaged PP-InsPs. Upon light-triggered release of 5-PP-InsP5, the major cellular inositol pyrophosphate, oscillations of intracellular Ca2+ levels in MIN6 cells were transiently reduced to spontaneously recover again. In contrast, uncaging of 1-PP-InsP5, a minor cellular isomer, was without effect. These results provide evidence that PP-InsPs play an active role in regulating [Ca2+]i oscillations, a key element in triggering exocytosis and secretion in β-cells.
机译:在许多细胞功能中,肌醇焦磷酸酯(PP-InsPs)是参与调节葡萄糖摄取,胰岛素敏感性和体重增加的代谢信使。但是,它们的作用机理仍知之甚少。到目前为止,已经通过相关代谢激酶(IP6K,PPIP5K)的过表达或敲除/抑制研究了PP-InsPs对细胞代谢的影响。这些方法尤其受到时间分辨率和潜在补偿机制的限制。在这里,我们描述了细胞渗透笼状PP-InsPs的合成,作为在遗传上不受干扰的细胞环境中快速调节PP-InsPs定义异构体的细胞内水平的工具。我们显示,笼中的前代谢产物很容易进入活细胞,在那里它们被酶转化为仍然没有活性,代谢稳定的光笼PP-InsPs。通过光触发释放5-PP-InsP5(一种主要的细胞肌醇焦磷酸盐)后,MIN6细胞中的细胞内Ca 2 + 的振荡被暂时降低,以自发地恢复。相反,将较小的细胞异构体1-PP-InsP5开封没有效果。这些结果提供了证据,表明PP-InsPs在调节[Ca 2 + ] i振荡中起积极作用,这是触发β细胞胞吐和分泌的关键因素。

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