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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Efficient metal-specific transcription activation by Drosophila MTF-1 requires conserved cysteine residues in the carboxy-terminal domain
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Efficient metal-specific transcription activation by Drosophila MTF-1 requires conserved cysteine residues in the carboxy-terminal domain

机译:果蝇MTF-1的有效金属特异性转录激活需要羧基末端结构域中的保守半胱氨酸残基

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摘要

MTF-1 is a sequence-specific DNA binding protein that activates the transcription of metal responsive genes. The extent of activation is dependent on the nature of the metal challenge. Here we identify separate regions within the Drosophila MTF-1 (dMTF-1) protein that are required for efficient copper- versus cadmium-induced transcription. dMTF-1 contains a number of potential metal binding regions that might allow metal discrimination including a DNA binding domain containing six zinc fingers and a highly conserved cysteine-rich C-terminus. We find that four of the zinc fingers in the DNA binding domain are essential for function but the DNA binding domain does not contribute to the metal discrimination by dMTF-1. We find that the conserved C-terminus of the cysteine-rich domain provides cadmium specificity while copper specificity maps to the previously described copper-binding region (Chen et al.). In addition, both metal specific domains are autorepressive in the absence of metal and contribute to the low level of basal transcription from metal inducible promoters.
机译:MTF-1是一种序列特异性DNA结合蛋白,可激活金属反应性基因的转录。活化程度取决于金属挑战的性质。在这里,我们确定了果蝇MTF-1(dMTF-1)蛋白中有效的铜诱导相对于镉诱导的转录所必需的单独区域。 dMTF-1包含许多可能的金属结合区,可能允许金属区分,包括一个包含六个锌指和一个高度保守的富含半胱氨酸的C末端的DNA结合域。我们发现,DNA结合域中的四个锌指对于功能至关重要,但DNA结合域对dMTF-1的金属识别无贡献。我们发现,富含半胱氨酸的结构域的保守C末端提供了镉特异性,而铜特异性则映射到先前描述的铜结合区(Chen等人)。另外,两种金属特异性结构域在不存在金属的情况下都是自抑制的,并且有助于从金属诱导型启动子的低水平基础转录。

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