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Directional bias during mating type switching in Saccharomyces is independent of chromosomal architecture

机译:酵母菌在交配类型转换过程中的方向偏向与染色体结构无关

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摘要

Haploid Saccharomyces cells have the remarkable potential to change mating type as often as every generation, a process accomplished by an intrachromosomal gene conversion between an expressor locus MAT and one of two repositories of mating type information, HML or HMR. The particular locus selected as donor is dictated by the mating type of the cell, a bias that ensures productive mating type interconversion. Here we use green fluorescent protein tagging of the expressor and donor loci on chromo some III to show that this preference for donor locus does not result from a predetermined organization of chromosome III: HML and MAT as well as HMR and MAT remain separated in cells of both mating types. In fact, cells in which the inappropriate donor locus is artificially tethered to MAT still predominantly select the correct donor. We find, though, that initiation of switching leads to a rapid association of the correct donor locus with MAT. Thus, in mating type switching in Saccharomyces, donor preference is imposed at commitment to recombination rather than at physical contact of interacting DNA strands.
机译:单倍糖酵母细胞具有显着的潜力,可以每隔一代就改变交配类型,这是通过表达基因座MAT和两个交配类型信息存储库之一HML或HMR之间的染色体内基因转换而完成的过程。选择作为供体的特定基因座由细胞的交配类型决定,该交配确保了生产性交配类型的相互转化。在这里,我们对某些III号染色体上的表达基因和供体基因座进行绿色荧光蛋白标记,以表明这种对供体基因座的偏爱不是由于III号染色体的预定组织引起的:HML和MAT以及HMR和MAT在细胞中仍保持分离两种交配类型。实际上,将不适当的供体基因座人工拴系到MAT的细胞仍主要选择正确的供体。但是,我们发现转换的启动导致正确的供体基因座与MAT快速关联。因此,在酿酒酵母的交配类型转换中,供体优先选择是对重组的承诺,而不是相互作用的DNA链的物理接触。

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