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Phosphorylation and Other Conundrums of Na/Ca Exchanger, NCX1

机译:Na / Ca交换剂NCX1的磷酸化和其他难题

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摘要

The Na~+/Ca~(2+) exchanger (NCX) is an important Ca~(2+) transport mechanism in virtually all cells in the body. There are three genes that control the expression of NCX in mammals. There are at least 16 alternatively spliced isoforms of NCX1 that target muscle and nerve and other tissues. Here we briefly discuss three remarkable regulatory issues or "conundrums" that involve the most prevalently expressed gene, NCX1. (1) How is NCX1 regulated by phosphorylation? We suggest that the macromolecular complex of NCX1 plays a critical role in the regulation of NCX. The role of the macromolecular complex and evidence supporting its existence and functional importance is presented. (2) Can there be transport block of a single "mode" of NCX1 transport by drugs or therapeutic agents? The simple answer is "no." A brief explanation is provided. (3) How can NCX1 knockout mice live? The answer is "by other compensatory regulatory mechanisms." These conundrums highlight important features in NCX1 and lay the foundation for new experiments to elucidate function and regulation of NCX1 and provide a context for investigations that seek to understand novel therapeutic agents.
机译:Na〜+ / Ca〜(2+)交换子(NCX)是体内几乎所有细胞中重要的Ca〜(2+)转运机制。存在三种控制哺乳动物中NCX表达的基因。至少有16种NCX1的可变剪接同工型靶向肌肉,神经和其他组织。在这里,我们简要讨论涉及最普遍表达的基因NCX1的三个显着的调控问题或“难题”。 (1)NCX1如何通过磷酸化调控?我们建议,NCX1的高分子复合物在调控NCX中起着关键作用。介绍了高分子复合物的作用以及支持其存在和功能重要性的证据。 (2)是否存在药物或治疗剂对NCX1单一“运输方式”的运输障碍?简单回答是不。”提供简要说明。 (3)NCX1基因敲除小鼠如何生活?答案是“通过其他补偿性监管机制”。这些难题突出了NCX1的重要特征,并为阐明NCX1的功能和调控的新实验奠定了基础,并为寻求了解新型治疗剂的研究提供了背景。

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