首页> 外文期刊>The Journal of biological chemistry >Functional Heterogeneity in the Zinc Fingers of Metalloregulatory Protein Metal Response Element-binding Transcription Factor-1*
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Functional Heterogeneity in the Zinc Fingers of Metalloregulatory Protein Metal Response Element-binding Transcription Factor-1*

机译:金属调节蛋白金属反应元件结合转录因子-1 *的锌指中的功能异质性*

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Metal response element-binding transcription factor-1 (MTF-1) is a unique, zinc-inducible transcription factor that binds to metal response elements in the metallothionein promoter and activates transcription in response to metals and oxidative stress. MTF-1 contains six zinc fingers of the Cys2-His2 type. It was previously shown that MTF-1 is reversibly activated to bind DNA in response to changes in zinc status, unlike other zinc finger transcription factors, which do not appear to be reversibly activated by zinc in the cellular environment. Here we show that zinc fingers 2–4 constitute the core DNA-binding domain, whereas fingers 5 and 6 appear to be unnecessary for DNA binding in vitro. Deletion of finger 1 resulted in a protein that bound DNA constitutively in vitro. Furthermore, transfer of MTF-1 finger 1 to a position immediately preceding the three zinc fingers of Sp1 resulted in a chimeric protein that required exogenous zinc to activate DNA binding in vitro, unlike native Sp1, which binds DNA constitutively. Transient transfection experiments demonstrated that intact MTF-1 activated a reporter 2.5–4-fold above basal levels after metal treatment in mouse MTF-1 knockout cells, Drosophila SL2 cells, and yeast. However, the metal response was lost in all three systems when finger 1 was deleted, but was unaffected by deletion of fingers 5 and 6. These data suggest that finger 1 of MTF-1 constitutes a unique metal-sensing domain that, in cooperation with the transactivation domains, produces a zinc-sensing metalloregulatory transcription factor.
机译:金属反应元件结合转录因子-1(MTF-1)是一种独特的锌诱导转录因子,与金属硫蛋白启动子中的金属反应元件结合并响应金属和氧化应激而激活转录。 MTF-1包含六个Cys2-His2类型的锌指。先前已经证明,与其他锌指转录因子不同,MTF-1被响应于锌状态的变化而可逆地激活以结合DNA,而其他锌指转录因子在细胞环境中似乎并未被锌可逆地激活。在这里,我们显示锌指2–4构成了核心DNA结合结构域,而手指5和6似乎对于体外DNA结合是不必要的。手指1的缺失导致蛋白质在体外组成性结合DNA。此外,将MTF-1指1转移到Sp1的三个锌指之前的位置会产生一种嵌合蛋白,该蛋白需要外源锌才能在体外激活DNA结合,这与天然Sp1不同,后者可以组成性结合DNA。瞬时转染实验表明,在小鼠MTF-1敲除细胞,果蝇SL2细胞和酵母中进行金属处理后,完整的MTF-1激活的报告分子比基础水平高2.5-4倍。但是,当删除手指1时,金属响应在所有三个系统中均丢失,但不受手指5和6删除的影响。这些数据表明,MTF-1的手指1构成了一个独特的金属感测域,与反式激活域产生锌敏感的金属调控转录因子。

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