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PMID: 21242538 已发表 · ppublish 英语

Ploidy dictates repair pathway choice under DNA replication stress.

Genetics ·第 187 卷 ·第 4 期 ·2011-08-15

Li Xin Chenglin, Tye Bik K

摘要

This study reports an unusual ploidy-specific response to replication stress presented by a defective minichromosome maintenance (MCM) helicase allele in yeast. The corresponding mouse allele, Mcm4(Chaos3), predisposes mice to mammary gland tumors. While mcm4(Chaos3) causes replication stress in both haploid and diploid yeast, only diploid mutants exhibit G2/M delay, severe genetic instability (GIN), and reduced viability. These different outcomes are associated with distinct repair pathways adopted in haploid and diploid mutants. Haploid mutants use the Rad6-dependent pathways that resume stalled forks, whereas the diploid mutants use the Rad52- and MRX-dependent pathways that repair double strand breaks. The repair pathway choice is irreversible and not regulated by the availability of repair enzymes. This ploidy effect is independent of mating type heterozygosity and not further enhanced by increasing ploidy. In summary, a defective MCM helicase causes GIN only in particular cell types. In response to replication stress, early events associated with ploidy dictate the repair pathway choice. This study uncovers a fundamental difference between haplophase and diplophase in the maintenance of genome integrity.

文献信息
期刊
Genetics
期刊简称
Genetics
发表日期
2011-08-15
收录日期
2011-04-11
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
0374636
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