首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Different Mating-Type-Regulated Genes Affect the DNA Repair Defects of Saccharomyces RAD51, RAD52 and RAD55 Mutants.
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Different Mating-Type-Regulated Genes Affect the DNA Repair Defects of Saccharomyces RAD51, RAD52 and RAD55 Mutants.

机译:不同交配类型调控的基因影响酿酒酵母RAD51,RAD52和RAD55突变体的DNA修复缺陷。

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Saccharomyces cerevisiae cells expressing both a- and alpha-mating-type (MAT) genes (termed mating-type heterozygosity) exhibit higher rates of spontaneous recombination and greater radiation resistance than cells expressing only MATa or MATalpha. MAT heterozygosity suppresses recombination defects of four mutations involved in homologous recombination: complete deletions of RAD55 or RAD57, an ATPase-defective Rad51 mutation (rad51-K191R), and a C-terminal truncation of Rad52, rad52-Delta327. We investigated the genetic basis of MAT-dependent suppression of these mutants by deleting genes whose expression is controlled by the Mata1-Matalpha2 repressor and scoring resistance to both campothecin (CPT) and phleomycin. Haploid rad55Delta strains became more damage resistant after deleting genes required for nonhomologous end-joining (NHEJ), a process that is repressed in MATa/MATalpha cells. Surprisingly, NHEJ mutations do not suppress CPT sensitivity of rad51-K191R or rad52-Delta327. However, rad51-K191R is uniquely suppressed by deleting the RME1 gene encoding a repressor of meiosis or its coregulator SIN4; this effect is independent of the meiosis-specific homolog, Dmc1. Sensitivity of rad52-Delta327 to CPT was unexpectedly increased by the MATa/MATalpha-repressed gene YGL193C, emphasizing the complex ways in which MAT regulates homologous recombination. The rad52-Delta327 mutation is suppressed by deleting the prolyl isomerase Fpr3, which is not MAT regulated. rad55Delta is also suppressed by deletion of PST2 and/or YBR052C (RFS1, rad55 suppressor), two members of a three-gene family of flavodoxin-fold proteins that associate in a nonrandom fashion with chromatin. All three recombination-defective mutations are made more sensitive by deletions of Rad6 and of the histone deacetylases Rpd3 and Ume6, although these mutations are not themselves CPT or phleomycin sensitive.
机译:与仅表达MATa或MATalpha的细胞相比,同时表达α和α交配型(MAT)基因(称为交配型杂合性)的酿酒酵母细胞表现出更高的自发重组率和更高的辐射抗性。 MAT杂合性可抑制涉及同源重组的四个突变的重组缺陷:RAD55或RAD57的完全缺失,ATP酶缺陷的Rad51突变(rad51-K191R)和Rad52的C端截短,rad52-Delta327。我们通过删除其表达受Mata1-Matalpha2阻遏物控制并得分对喜树碱(CPT)和毛霉素的抗性的基因,研究了这些突变体的MAT依赖性抑制的遗传基础。在删除非同源末端连接(NHEJ)所需的基因后,单倍体rad55Delta菌株变得更具抗性,该过程在MATa / MATalpha细胞中受到抑制。出乎意料的是,NHEJ突变不会抑制rad51-K191R或rad52-Delta327的CPT敏感性。但是,通过删除编码减数分裂阻遏物或其共调节因子SIN4的RME1基因,可唯一抑制rad51-K191R。这种作用与减数分裂特异性同源物Dmc1无关。受到MATa / MATalpha抑制的基因YGL193C意外地提高了rad52-Delta327对CPT的敏感性,强调了MAT调控同源重组的复杂方法。 rad52-Delta327突变可通过删除不受MAT调节的脯氨酰异构酶Fpr3来抑制。 rad55Delta也被PST2和/或YBR052C(RFS1,rad55抑制剂)的缺失所抑制,PST2和/或YBR052C是黄素毒素折叠蛋白三基因家族的两个成员,它们以非随机方式与染色质结合。尽管Rad6和组蛋白脱乙酰基酶Rpd3和Ume6缺失,但对这三个重组缺陷型突变都更加敏感,尽管这些突变本身对CPT或phleomycin并不敏感。

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