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首页> 外文期刊>Molecular and Cellular Biology >Cysteine residues in the zinc finger and amino acids adjacent to the finger are necessary for DNA binding by the LAC9 regulatory protein of Kluyveromyces lactis.
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Cysteine residues in the zinc finger and amino acids adjacent to the finger are necessary for DNA binding by the LAC9 regulatory protein of Kluyveromyces lactis.

机译:锌指中的半胱氨酸残基和与该指相邻的氨基酸对于乳酸克鲁维酵母的LAC9调节蛋白与DNA结合是必需的。

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LAC9 is a positive regulatory protein that controls transcription of the lactose-galactose regulon in Kluyveromyces lactis. LAC9 is homologous to the GAL4 protein of Saccharomyces cerevisiae. Both proteins have a single "zinc finger" which plays a role in DNA binding. We previously hypothesized (L. V. Wray, M. M. Witte, R. C. Dickson, and M. I. Riley, Mol. Cell. Biol. 7:1111-1121, 1987) that the DNA-binding domain of the LAC9 protein consisted of the zinc finger as well as a region of amino acids on the carboxyl-terminal side of the zinc finger. In this study we used oligonucleotide-directed mutagenesis to introduce 13 single-amino-acid changes into the proposed DNA-binding domain of the LAC9 protein. Variant LAC9 proteins carrying an amino acid substitution in any one of the four highly conserved Cys residues of the zinc finger had reduced DNA-binding activity, suggesting that each Cys is necessary for DNA binding. Three of four variant LAC9 proteins with amino acid substitutions located on the carboxyl-terminal side of the zinc finger had reduced DNA-binding activity. These results support our hypothesis that the DNA-binding domain of the LAC9 protein is composed of the zinc finger and the adjacent region on the carboxyl side of the zinc finger, a region that has the potential to form an alpha-helix. Finally, LAC9 proteins containing His residues substituted for the conserved Cys residues also had reduced DNA-binding activity, indicating that His residues are not equivalent to Cys residues, as had been previously thought.
机译:LAC9是一种阳性调节蛋白,可控制乳酸克鲁维酵母中乳糖-半乳糖调节子的转录。 LAC9与酿酒酵母的GAL4蛋白同源。两种蛋白都有一个“锌指”,在DNA结合中起作用。我们先前假设(LV Wray,MM Witte,RC Dickson和MI Riley,Mol。Cell。Biol。7:1111-1121,1987),LAC9蛋白的DNA结合结构域由锌指和锌指羧基末端一侧的氨基酸区域。在这项研究中,我们使用寡核苷酸定向诱变将13个单氨基酸变化引入到LAC9蛋白的拟议DNA结合结构域中。在锌指的四个高度保守的Cys残基的任何一个中带有氨基酸取代的变异LAC9蛋白具有降低的DNA结合活性,这表明每个Cys对于DNA结合都是必需的。位于锌指的羧基末端一侧的具有氨基酸取代的四个变体LAC9蛋白中的三个具有降低的DNA结合活性。这些结果支持了我们的假设,即LAC9蛋白的DNA结合结构域由锌指和锌指羧基侧的相邻区域组成,该区域具有形成α-螺旋的潜力。最后,含有His残基取代保守的Cys残基的LAC9蛋白也具有降低的DNA结合活性,表明His残基不像Cys残基一样。

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