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[参与细胞对锌反应的转录因子MTF-1]

[Transcription Factor MTF-1 Involved in the Cellular Response to Zinc].

作者信息

Otsuka Fuminori

机构信息

Laboratory of Molecular Environmental Health, Faculty of Pharma-Sciences, Teikyo University.

出版信息

Yakugaku Zasshi. 2021;141(6):857-867. doi: 10.1248/yakushi.20-00247.

Abstract

Heavy metals, both toxic and essential, have long been an important research focus in life science. To investigate the intracellular actions of heavy metals at the molecular level, I have been exploring protein factors involved in induction of metallothionein (MT) genes by heavy metals that specifically bind to a metal responsive element (MRE) in the region upstream of the human MT-IIA gene. Purification of a zinc-dependent MRE-binding factor, and cloning of its cDNA identified a sequence identical to that of metal-responsive transcription factor-1 (MTF-1). MTF-1, which is characterized by six tandem repeats of the CH type zinc finger motif, is indispensable for induction of MT gene expression by multiple types of heavy metal, but zinc is the only metal that can directly activate MTF-1 binding to the MRE, indicating that other heavy metal signals act through zinc as a second messenger. Functional analysis of various MTF-1 point mutants revealed several cysteine (Cys) residues critical for DNA binding and/or transactivation activity. Interestingly, six finger motifs seem to mediate several MTF-1 functions other than DNA binding. Immunohistochemical analyses of various mouse tissues revealed selective expression of MTF-1 in spermatocytes among the testicular cells, suggesting roles relevant to spermatogenesis. The zinc regulon, under the control of MTF-1, will likely provide good clues to aid in unraveling novel functions of intracellular zinc ions.

摘要

重金属,既有毒性的也有必需的,长期以来一直是生命科学中的一个重要研究焦点。为了在分子水平上研究重金属的细胞内作用,我一直在探索参与重金属诱导金属硫蛋白(MT)基因的蛋白质因子,这些重金属特异性结合人MT-IIA基因上游区域的金属反应元件(MRE)。锌依赖性MRE结合因子的纯化及其cDNA的克隆鉴定出一个与金属反应转录因子-1(MTF-1)序列相同的序列。MTF-1具有六个串联重复的CH型锌指基序,对于多种重金属诱导MT基因表达是不可或缺的,但锌是唯一能直接激活MTF-1与MRE结合的金属,这表明其他重金属信号通过锌作为第二信使起作用。对各种MTF-1点突变体的功能分析揭示了几个对DNA结合和/或反式激活活性至关重要的半胱氨酸(Cys)残基。有趣的是,六个指基序似乎介导了MTF-1除DNA结合之外的几种功能。对各种小鼠组织的免疫组织化学分析显示,MTF-1在睾丸细胞中的精母细胞中选择性表达,提示其与精子发生有关的作用。在MTF-1控制下的锌调节子可能会为揭示细胞内锌离子的新功能提供很好的线索。

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