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蛋白质组学高亲和力锌转运:金属硫蛋白在其中扮演什么角色?

Proteomic High Affinity Zn Trafficking: Where Does Metallothionein Fit in?

作者信息

Petering David H, Mahim Afsana

机构信息

Department of Chemistry and Biochemistry, University of Wisconsin-Milwaukee, Milwaukee, WI 53217, USA.

出版信息

Int J Mol Sci. 2017 Jun 17;18(6):1289. doi: 10.3390/ijms18061289.

Abstract

The cellular constitution of Zn-proteins and Zn-dependent signaling depend on the capacity of Zn to find specific binding sites in the face of a plethora of other high affinity ligands. The most prominent of these is metallothionein (MT). It serves as a storage site for Zn under various conditions, and has chemical properties that support a dynamic role for MT in zinc trafficking. Consistent with these characteristics, changing the availability of zinc for cells and tissues causes rapid alteration of zinc bound to MT. Nevertheless, zinc trafficking occurs in metallothionein-null animals and cells, hypothetically making use of proteomic binding sites to mediate the intracellular movements of zinc. Like metallothionein, the proteome contains a large concentration of proteins that strongly coordinate zinc. In this environment, Zn may be of little significance. Instead, this review sets forth the basis for the hypothesis that components of the proteome and MT jointly provide the platform for zinc trafficking.

摘要

锌蛋白的细胞组成和锌依赖性信号传导取决于锌在面对大量其他高亲和力配体时找到特定结合位点的能力。其中最突出的是金属硫蛋白(MT)。它在各种条件下作为锌的储存位点,并且具有支持MT在锌转运中发挥动态作用的化学性质。与这些特征一致,改变细胞和组织中锌的可用性会导致与MT结合的锌迅速改变。然而,锌转运发生在缺乏金属硫蛋白的动物和细胞中,据推测是利用蛋白质组结合位点来介导锌的细胞内移动。与金属硫蛋白一样,蛋白质组包含大量能强烈配位锌的蛋白质。在这种环境下,锌可能意义不大。相反,本综述阐述了蛋白质组成分和MT共同为锌转运提供平台这一假设的依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c66/5486110/2ec14d91efd7/ijms-18-01289-g001.jpg

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