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钙信号在神经胶质瘤细胞中的作用:核苷酸受体。

Calcium Signaling in Glioma Cells: The Role of Nucleotide Receptors.

机构信息

Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Adv Exp Med Biol. 2020;1202:67-86. doi: 10.1007/978-3-030-30651-9_4.

Abstract

Calcium signaling is probably one of the evolutionary oldest and the most common way by which the signal can be transmitted from the cell environment to the cytoplasmic calcium binding effectors. Calcium signal is fast and due to diversity of calcium binding proteins it may have a very broad effect on cell behavior. Being a crucial player in neuronal transmission it is also very important for glia physiology. It is responsible for the cross-talk between neurons and astrocytes, for microglia activation and motility. Changes in calcium signaling are also crucial for the behavior of transformed glioma cells. The present chapter summarizes molecular mechanisms of calcium signal formation present in glial cells with a strong emphasis on extracellular nucleotide-evoked signaling pathways. Some aspects of glioma C6 signaling such as the cross-talk between P2Y and P2Y nucleotide receptors in calcium signal generation will be discussed in-depth, to show complexity of machinery engaged in formation of this signal. Moreover, possible mechanisms of modulation of the calcium signal in diverse environments there will be presented herein. Finally, the possible role of calcium signal in glioma motility is also discussed. This is a very important issue, since glioma cells, contrary to the vast majority of neoplastic cells, cannot spread in the body with the bloodstream and, at least in early stages of tumor development, may expand only by means of sheer motility.

摘要

钙信号可能是进化上最古老、最常见的信号传递方式之一,它可以将信号从细胞环境传递到细胞质中的钙结合效应器。钙信号传递速度快,并且由于钙结合蛋白的多样性,它可能对细胞行为产生非常广泛的影响。作为神经元传递的关键参与者,它对神经胶质细胞的生理学也非常重要。它负责神经元和星形胶质细胞之间的串扰,以及小胶质细胞的激活和运动。钙信号的变化对于转化性神经胶质瘤细胞的行为也至关重要。本章总结了神经胶质细胞中存在的钙信号形成的分子机制,特别强调了细胞外核苷酸引发的信号通路。将深入讨论 C6 神经胶质瘤细胞信号的一些方面,例如在钙信号生成中 P2Y 和 P2Y 核苷酸受体之间的串扰,以展示参与形成这种信号的复杂机制。此外,还将介绍在不同环境中调节钙信号的可能机制。最后,还讨论了钙信号在神经胶质瘤运动中的可能作用。这是一个非常重要的问题,因为神经胶质瘤细胞与绝大多数肿瘤细胞不同,不能随血流扩散,至少在肿瘤发展的早期阶段,只能通过纯粹的运动来扩张。

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