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Rad52 功能可防止白念珠菌的染色体丢失和截断。

Rad52 function prevents chromosome loss and truncation in Candida albicans.

机构信息

Departamento de Ciencias Biomédicas, Area Microbiología, Facultad de Ciencias, Universidad de Extremadura, 06071 Badajoz, Spain.

出版信息

Mol Microbiol. 2011 Mar;79(6):1462-82. doi: 10.1111/j.1365-2958.2011.07532.x. Epub 2011 Jan 27.

Abstract

RAD52 is required for almost all recombination events in Saccharomyces cerevisiae. We took advantage of the heterozygosity of HIS4 in the Candida albicans SC5314 lineage to study the role of Rad52 in the genomic stability of this important fungal pathogen. The rate of loss of heterozygosity (LOH) at HIS4 in rad52-ΔΔ strains was ∼10(-3) , at least 100-fold higher than in Rad52(+) strains. LOH of whole chromosome 4 or truncation of the homologue that carries the functional HIS4 allele was detected in all 80 rad52-ΔΔ His auxotrophs (GLH -GL lab His(-)) obtained from six independent experiments. Isolates that had undergone whole chromosome LOH, presumably due to loss of chromosome, carried two copies of the remaining homologue. Isolates with truncations carried centric fragments of broken chromosomes healed by de novo telomere addition. GLH strains exhibited variable degrees of LOH across the genome, including two strains that became homozygous for all the heterozygous markers tested. In addition, GLH strains exhibited increased chromosomal instability (CIN), which was abolished by reintroduction of RAD52. CIN of GLH isolates is reminiscent of genomic alterations leading to cancer in human cells, and support the mutator hypothesis in which a mutator mutation or CIN phenotype facilitate more mutations/aneuploidies.

摘要

RAD52 几乎是酿酒酵母中所有重组事件所必需的。我们利用白念珠菌 SC5314 谱系中 HIS4 的杂合性来研究 Rad52 在这个重要真菌病原体基因组稳定性中的作用。rad52-ΔΔ 菌株中 HIS4 的杂合性丢失(LOH)率约为 10(-3) ,至少比 Rad52(+) 菌株高 100 倍。在从六个独立实验中获得的 80 个 rad52-ΔΔ His 营养缺陷型(GLH -GL lab His(-))中,检测到整个染色体 4 的 LOH 或携带功能性 HIS4 等位基因的同源物的截断。由于染色体丢失而发生整个染色体 LOH 的分离株携带两个剩余同源物的拷贝。发生染色体截断的分离株携带由从头端粒添加修复的断裂染色体的着丝粒片段。GLH 菌株在整个基因组中表现出不同程度的 LOH,包括两个成为所有测试的杂合标记纯合的菌株。此外,GLH 菌株表现出增加的染色体不稳定性(CIN),这可通过 RAD52 的重新引入而消除。GLH 分离株的 CIN 使人联想到导致人类细胞癌症的基因组改变,并支持突变体假说,其中突变体突变或 CIN 表型促进更多的突变/非整倍性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b865/3564047/1884213d02d9/nihms433025f1.jpg

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