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Zinc in Cellular Regulation: The Nature and Significance of Zinc Signals

机译:锌在细胞调节中的作用:锌信号的性质和意义

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摘要

In the last decade, we witnessed discoveries that established Zn2+ as a second major signalling metal ion in the transmission of information within cells and in communication between cells. Together with Ca2+ and Mg2+, Zn2+ covers biological regulation with redox-inert metal ions over many orders of magnitude in concentrations. The regulatory functions of zinc ions, together with their functions as a cofactor in about three thousand zinc metalloproteins, impact virtually all aspects of cell biology. This article attempts to define the regulatory functions of zinc ions, and focuses on the nature of zinc signals and zinc signalling in pathways where zinc ions are either extracellular stimuli or intracellular messengers. These pathways interact with Ca2+, redox, and phosphorylation signalling. The regulatory functions of zinc require a complex system of precise homeostatic control for transients, subcellular distribution and traffic, organellar homeostasis, and vesicular storage and exocytosis of zinc ions.
机译:在过去的十年中,我们目睹了发现,将Zn 2 + 建立为细胞内信息传输和细胞间通讯的第二种主要信号金属离子。 Zn 2 + 与Ca 2 + 和Mg 2 + 一起涵盖了浓度范围多个数量级的氧化还原惰性金属离子的生物调控。 。锌离子的调节功能及其在约三千种锌金属蛋白中作为辅因子的功能实际上影响了细胞生物学的所有方面。本文试图定义锌离子的调节功能,并着重于锌离子是细胞外刺激物或细胞内信使的途径中锌信号和锌信号的性质。这些途径与Ca 2 + ,氧化还原和磷酸化信号相互作用。锌的调节功能需要一个复杂的系统来进行精确的稳态控制,以控制瞬态,亚细胞分布和运输,细胞器稳态,囊泡贮藏和胞吐。

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