首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Lack of DNA homology in a pair of divergent chromosomes greatly sensitizes them to loss by DNA damage.
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Lack of DNA homology in a pair of divergent chromosomes greatly sensitizes them to loss by DNA damage.

机译:一对发散染色体中缺乏DNA同源性很容易使它们对DNA损伤造成的损失敏感。

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摘要

Chromosomal DNA is considered a priori to be a target for the induction of numerical (whole chromosome) aneuploidy in mitotic cells. If true, DNA repair would be expected to contribute to genome stability. One type of repair that appears to play an important role in the response of many organisms to DNA-damaging agents involves recombination. Using the yeast Saccharomyces cerevisiae containing a pair of DNA divergent (homoeologous) chromosomes, we have been able to determine the importance of recombinational repair of DNA damage in the maintenance of chromosome number. Specifically, the induction of aneuploidy by ionizing radiation has been examined in diploids that had one chromosome III replaced by a divergent chromosome from Saccharomyces carlsbergensis. The chromosomes are functionally equivalent but lack precise DNA homology over one-half their length. The absence of homology, and thus the opportunity for recombinational repair (presumably of DNA double-strand breaks) in the divergent chromosomes, results in high levels (5-10%) of aneuploidy for chromosome III at doses of radiation resulting in almost no killing. For homologous chromosomes, the frequency of loss is 20-50 times lower.
机译:染色体DNA被认为是先天诱导有丝分裂细胞中数字(整个染色体)非整倍性的靶标。如果属实,DNA修复有望促进基因组稳定性。似乎在许多生物体对DNA破坏剂的反应中起重要作用的一种修复类型涉及重组。使用含有一对DNA发散(同源)染色体的酿酒酵母,我们已经能够确定重组DNA损伤修复在维持染色体数目中的重要性。具体地,已经在具有由来自酿酒酵母(Saccharomyces carlsbergensis)的发散染色体替代的一个染色体III被二倍体的二倍体中检查了通过电离辐射诱导的非整倍性。染色体在功能上是等效的,但在长度的一半上缺乏精确的DNA同源性。缺乏同源性,因此在分散的染色体中进行重组修复(可能是DNA双链断裂)的机会,导致在辐射剂量下III号染色体的非整倍性水平很高(5-10%),几乎没有杀死作用。对于同源染色体,丢失的频率要低20-50倍。

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