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小鼠金属反应元件结合转录因子1 DNA结合的可逆激活涉及锌与锌指结构域的相互作用。

Reversible activation of mouse metal response element-binding transcription factor 1 DNA binding involves zinc interaction with the zinc finger domain.

作者信息

Dalton T P, Bittel D, Andrews G K

机构信息

Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City 66160-7421, USA.

出版信息

Mol Cell Biol. 1997 May;17(5):2781-9. doi: 10.1128/MCB.17.5.2781.

Abstract

The DNA-binding activity of the Zn finger protein metal response element-binding transcription factor 1 (MTF-1) was rapidly induced both in vivo in mouse Hepa cells, canine MDCK, and human HeLa cells after incubation in medium containing zinc and in vitro in whole-cell extracts to which zinc was added. Acquisition of DNA-binding capacity in the presence of free zinc was temperature and time dependent and did not occur at 4 degrees C. In contrast, activated MTF-1 binding to the metal response element occurred at 4 degrees C. After Zn activation, mouse MTF-1 binding activity was more sensitive to EDTA and was stabilized by DNA binding relative to the Zn finger transcription factor Sp1. After dilution of nuclear or whole-cell extracts from Zn-treated cells and incubation at 37 degrees C, mouse MTF-1 DNA-binding activity was no longer detected but could be completely reconstituted by the subsequent readdition of zinc. In vitro-synthesized, recombinant mouse MTF-1 displayed a similar, reversible temperature- and Zn-dependent activation of DNA-binding activity. Analysis of deletion mutants of recombinant MTF-1 suggests that the Zn finger domain is important for the Zn-dependent activation of DNA-binding capacity. Thus, mouse MTF-1 functions as a reversibly activated sensor of free zinc pools in the cell.

摘要

锌指蛋白金属反应元件结合转录因子1(MTF-1)的DNA结合活性在含有锌的培养基中孵育后,在小鼠Hepa细胞、犬MDCK细胞和人HeLa细胞的体内以及添加锌的全细胞提取物的体外均迅速被诱导。在游离锌存在下获得DNA结合能力是温度和时间依赖性的,在4℃时不会发生。相反,活化的MTF-1与金属反应元件的结合在4℃时发生。锌激活后,小鼠MTF-1结合活性对EDTA更敏感,并且相对于锌指转录因子Sp1,通过DNA结合而稳定。从锌处理的细胞中稀释核提取物或全细胞提取物并在37℃孵育后,不再检测到小鼠MTF-1 DNA结合活性,但随后重新添加锌可使其完全重建。体外合成的重组小鼠MTF-1表现出类似的、可逆的温度和锌依赖性DNA结合活性激活。对重组MTF-1缺失突变体的分析表明,锌指结构域对于锌依赖性DNA结合能力的激活很重要。因此,小鼠MTF-1作为细胞中游离锌池的可逆激活传感器发挥作用。

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