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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A gene with specific and global effects on recombination of sequences from tandemly repeated genes in Saccharomyces cerevisiae.
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A gene with specific and global effects on recombination of sequences from tandemly repeated genes in Saccharomyces cerevisiae.

机译:对酿酒酵母串联重复基因的序列重组具有特异和整体作用的基因。

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The preservation of sequence homogeneity and copy number of tandemly repeated genes may require specific mechanisms or regulation of recombination. We have identified mutations that specifically affect recombination among natural repetitions in the yeast Saccharomyces cerevisiae. The rrm3 mutation stimulates mitotic recombination in the naturally occurring tandem repeats of the rDNA and copper chelatin (CUP1) genes. This mutation does not affect recombination of several other types of repeated genes tested including Ty elements, mating type information and duplications created by transformation. In addition to stimulating exchange among the multiple CUP1 repeats at their natural chromosomal location, rrm3 also increases recombination of a duplication of CUP1 units present at his4. This suggests that the RRM3 gene may encode a sequence-specific factor that contributes to a global suppression of mitotic exchange in sequences that can be maintained as tandem arrays.
机译:保持序列同质性和串联重复基因的拷贝数可能需要特定的机制或重组调控。我们已经确定了特定影响酵母酿酒酵母中自然重复之间重组的突变。 rrm3突变刺激rDNA和铜螯合蛋白(CUP1)基因的天然串联重复序列中的有丝分裂重组。此突变不会影响测试的其他几种重复基因的重组,包括Ty元素,交配类型信息和通过转化产生的重复。除了刺激多个CUP1重复序列在其天然染色体位置之间的交换外,rrm3还增加了his4处CUP1重复单元的重组。这表明RRM3基因可能编码一个序列特异性因子,该因子有助于整体抑制有序排列的序列中的有丝分裂交换。

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