首页> 美国卫生研究院文献>The Journal of Physiology >The ΔC splice-variant of TRPM2 is the hypertonicity-induced cation channel in HeLa cells and the ecto-enzyme CD38 mediates its activation
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The ΔC splice-variant of TRPM2 is the hypertonicity-induced cation channel in HeLa cells and the ecto-enzyme CD38 mediates its activation

机译:TRPM2的ΔC剪接变体是HeLa细胞中高渗诱导的阳离子通道胞外酶CD38介导其活化

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摘要

Hypertonicity-induced cation channels (HICCs) are key-players in proliferation and apoptosis but their molecular correlate remains obscure. Furthermore, the activation profile of HICCs is not well defined yet. We report here that, in HeLa cells, intracellular adenosine diphosphate ribose (ADPr) and cyclic ADPr (cADPr), as supposed activators of TRPM2, elicited cation currents that were virtually identical to the osmotic activation of HICCs. Silencing of the expression of TRPM2 and of the ecto-enzyme CD38 (as a likely source of ADPr and cADPr) inhibited HICC as well as nucleotide-induced currents and, in parallel, the hypertonic volume response of cells (the regulatory volume increase, RVI) was attenuated. Quantification of intracellular cADPr levels and the systematic application of extra- vs. intracellular nucleotides indicate that the outwardly directed gradient rather than the cellular activity of ADPr and cADPr triggers TRPM2 activation, probably along with a simultaneous biotransformation of nucleotides. Cloning of TRPM2 identified the ΔC-splice variant as the molecular correlate of the HICC, which could be strongly supported by a direct comparison of the respective Ca2+ selectivity. Finally, immunoprecipitation and high-resolution FRET/FLIM imaging revealed the interaction of TRPM2 and CD38 in the native as well as in a heterologous (HEK293T) expression system. We propose transport-related nucleotide export via CD38 as a novel mechanism of TRPM2/HICC activation. With the biotransformation of nucleotides running in parallel, continuous zero trans-conditions are achieved which will render the system infinitely sensitive.
机译:高渗诱导的阳离子通道(HICC)是增殖和凋亡的关键因素,但它们的分子相关性仍然不清楚。此外,HICC的激活特征还没有很好地定义。我们在这里报告说,在HeLa细胞中,胞内腺苷二磷酸核糖(ADPr)和环状ADPr(cADPr)作为TRPM2的活化剂,引起的阳离子电流实际上与HICC的渗透活化相同。沉默TRPM2和外切酶CD38(可能是ADPr和cADPr的来源)的表达抑制HICC以及核苷酸诱导的电流,同时抑制细胞的高渗体积反应(调节体积增加,RVI) )被衰减。细胞内cADPr水平的定量以及细胞外核苷酸与细胞内核苷酸的系统应用表明,ADPr和cADPr的向外定向梯度而不是细胞活性会触发TRPM2激活,这可能与核苷酸的同时生物转化一起。 TRPM2的克隆鉴定出ΔC-剪接变体为HICC的分子相关性,这可以通过直接比较各自的Ca 2 + 选择性来大力支持。最后,免疫沉淀和高分辨率FRET / FLIM成像揭示了TRPM2和CD38在天然以及异源(HEK293T)表达系统中的相互作用。我们建议通过CD38运输相关的核苷酸出口作为TRPM2 / HICC激活的新机制。通过核苷酸的生物转化并行运行,实现了连续的零反变条件,这将使系统无限敏感。

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