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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >CSE4 Genetically Interacts With the Saccharomyces cerevisiae Centromere DNA Elements CDE I and CDE II but Not CDE III: Implications for the Path of the Centromere DNA Around a Cse4p Variant Nucleosome
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CSE4 Genetically Interacts With the Saccharomyces cerevisiae Centromere DNA Elements CDE I and CDE II but Not CDE III: Implications for the Path of the Centromere DNA Around a Cse4p Variant Nucleosome

机译:CSE4遗传与啤酒酵母着丝粒DNA元素相互作用CDE I和CDE II而不是CDE III:着丝粒DNA围绕Cse4p变异核小体的路径的含义。

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Each Saccharomyces cerevisiae chromosome contains a single centromere composed of three conserved DNA elements, CDE I, II, and III. The histone H3 variant, Cse4p, is an essential component of the S. cerevisiae centromere and is thought to replace H3 in specialized nucleosomes at the yeast centromere. To investigate the genetic interactions between Cse4p and centromere DNA, we measured the chromosome loss rates exhibited by cse4 cen3 double-mutant cells that express mutant Cse4 proteins and carry chromosomes containing mutant centromere DNA ( cen3 ). When compared to loss rates for cells carrying the same cen3 DNA mutants but expressing wild-type Cse4p, we found that mutations throughout the Cse4p histone-fold domain caused surprisingly large increases in the loss of chromosomes carrying CDE I or CDE II mutant centromeres, but had no effect on chromosomes with CDE III mutant centromeres. Our genetic evidence is consistent with direct interactions between Cse4p and the CDE I-CDE II region of the centromere DNA. On the basis of these and other results from genetic, biochemical, and structural studies, we propose a model that best describes the path of the centromere DNA around a specialized Cse4p-nucleosome.
机译:每个酿酒酵母染色体均包含由三个保守的DNA元素CDE I,II和III组成的单个着丝粒。组蛋白H3变体Cse4p是酿酒酵母着丝粒的重要组成部分,被认为可以代替酵母着丝粒的专门核小体中的H3。为了研究Cse4p与着丝粒DNA之间的遗传相互作用,我们测量了表达突变Cse4蛋白并携带含有突变着丝粒DNA(cen3)的染色体的cse4 cen3双突变细胞表现出的染色体丢失率。与携带相同cen3 DNA突变体但表达野生型Cse4p的细胞的丢失率相比,我们发现整个Cse4p组蛋白折叠结构域的突变导致携带CDE I或CDE II突变体着丝粒的染色体损失显着增加,但是对具有CDE III突变着丝粒的染色体没有影响。我们的遗传证据与Cse4p和着丝粒DNA的CDE I-CDE II区之间的直接相互作用是一致的。根据遗传学,生化和结构研究的这些结果和其他结果,我们提出了一个模型,该模型可以最好地描述着丝粒DNA围绕特定Cse4p-核小体的路径。

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