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锌转运体及其在哺乳动物细胞中的功能整合。

Zinc transporters and their functional integration in mammalian cells.

机构信息

Division of Integrated Life Science, Graduate School of Biostudies, Kyoto University, Kyoto, Japan.

School of Pharmacy and Pharmaceutical Sciences, Cardiff University, Cardiff, United Kingdom.

出版信息

J Biol Chem. 2021 Jan-Jun;296:100320. doi: 10.1016/j.jbc.2021.100320. Epub 2021 Jan 22.

Abstract

Zinc is a ubiquitous biological metal in all living organisms. The spatiotemporal zinc dynamics in cells provide crucial cellular signaling opportunities, but also challenges for intracellular zinc homeostasis with broad disease implications. Zinc transporters play a central role in regulating cellular zinc balance and subcellular zinc distributions. The discoveries of two complementary families of mammalian zinc transporters (ZnTs and ZIPs) in the mid-1990s spurred much speculation on their metal selectivity and cellular functions. After two decades of research, we have arrived at a biochemical description of zinc transport. However, in vitro functions are fundamentally different from those in living cells, where mammalian zinc transporters are directed to specific subcellular locations, engaged in dedicated macromolecular machineries, and connected with diverse cellular processes. Hence, the molecular functions of individual zinc transporters are reshaped and deeply integrated in cells to promote the utilization of zinc chemistry to perform enzymatic reactions, tune cellular responsiveness to pathophysiologic signals, and safeguard cellular homeostasis. At present, the underlying mechanisms driving the functional integration of mammalian zinc transporters are largely unknown. This knowledge gap has motivated a shift of the research focus from in vitro studies of purified zinc transporters to in cell studies of mammalian zinc transporters in the context of their subcellular locations and protein interactions. In this review, we will outline how knowledge of zinc transporters has been accumulated from in-test-tube to in-cell studies, highlighting new insights and paradigm shifts in our understanding of the molecular and cellular basis of mammalian zinc transporter functions.

摘要

锌是所有生物体内普遍存在的生物金属。细胞内锌的时空动态为细胞提供了重要的信号机会,但也对细胞内锌稳态造成了挑战,具有广泛的疾病意义。锌转运体在调节细胞内锌平衡和亚细胞锌分布方面发挥着核心作用。20 世纪 90 年代中期发现的两种哺乳动物锌转运体(ZnTs 和 ZIPs)的互补家族,激发了人们对其金属选择性和细胞功能的广泛猜测。经过二十年的研究,我们已经对锌转运的生化特性有了描述。然而,在体外的功能与活细胞中的功能根本不同,在活细胞中,哺乳动物锌转运体被定向到特定的亚细胞位置,参与专门的大分子机器,并与多种细胞过程相联系。因此,单个锌转运体的分子功能在细胞中被重塑并深度整合,以促进利用锌化学来进行酶反应,调节细胞对病理生理信号的反应,并维持细胞内稳态。目前,驱动哺乳动物锌转运体功能整合的潜在机制在很大程度上尚不清楚。这一知识空白促使研究重点从纯化锌转运体的体外研究转移到哺乳动物锌转运体在亚细胞位置和蛋白相互作用背景下的细胞内研究。在这篇综述中,我们将概述从试管内研究到细胞内研究,如何积累锌转运体的知识,突出我们对哺乳动物锌转运体功能的分子和细胞基础的理解的新见解和范式转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3810/7949119/9eb32e1487e4/gr1.jpg

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