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Reciprocal uniparental disomy in yeast

机译:酵母中的对等单亲二体性

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摘要

In the diploid cells of most organisms, including humans, each chromosome is usually distinguishable from its partner homolog by multiple single-nucleotide polymorphisms. One common type of genetic alteration observed in tumor cells is uniparental disomy (UPD), in which a pair of homologous chromosomes are derived from a single parent resulting in loss of heterozygosity for all single-nucleotide polymorphisms while maintaining diploidy. Somatic UPD events are usually explained as reflecting two consecutive nondisjunction events. Here we report a previously undescribed mode of chromosome segregation in Saccharomyces cerevisiae in which one cell division produces daughter cells with reciprocal UPD for the same pair of chromosomes without an an-euploid intermediate. One pair of sister chromatids is segregated into one daughter cell and the other pair is segregated into the other daughter cell, mimicking a meiotic chromosome segregation pattern. We term this process "reciprocal uniparental disomy."
机译:在包括人在内的大多数生物的二倍体细胞中,每个染色体通常可以通过多个单核苷酸多态性与其伴侣同源物区分开。在肿瘤细胞中观察到的一种常见的遗传改变类型是单亲二体性(UPD),其中一对同源染色体源自单亲本,导致所有单核苷酸多态性的杂合性丧失,同时保持二倍体。通常将体细胞UPD事件解释为反映了两个连续的非分离事件。在这里,我们报告酿酒酵母中以前未描述的染色体分离模式,其中一个细胞分裂产生的子细胞具有相同的UPD,而同一对染色体却没有非整倍体中间体。一对姐妹染色单体被分离成一个子细胞,另一对被分离成另一个子细胞,模仿了减数分裂染色体的分离模式。我们称此过程为“相互单亲二体性”。

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