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Genetic Recombination in Bacillus subtilis 168: Contribution of Holliday Junction Processing Functions in Chromosome Segregation

机译:枯草芽孢杆菌168中的遗传重组:霍利迪交界处处理功能在染色体分离中的贡献。

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摘要

Bacillus subtilis mutants classified within the ɛ (ruvA, ΔruvB, ΔrecU, and recD) and η (ΔrecG) epistatic groups, in an otherwise rec+ background, render cells impaired in chromosomal segregation. A less-pronounced segregation defect in ΔrecA and Δsms (ΔradA) cells was observed. The repair deficiency of addAB, ΔrecO, ΔrecR, recH, ΔrecS, and ΔsubA cells did not correlate with a chromosomal segregation defect. The sensitivity of ɛ epistatic group mutants to DNA-damaging agents correlates with ongoing DNA replication at the time of exposure to the agents. The Δsms (ΔradA) and ΔsubA mutations partially suppress the DNA repair defect in ruvA and recD cells and the segregation defect in ruvA and ΔrecG cells. The Δsms (ΔradA) and ΔsubA mutations partially suppress the DNA repair defect of ΔrecU cells but do not suppress the segregation defect in these cells. The ΔrecA mutation suppresses the segregation defect but does not suppress the DNA repair defect in ΔrecU cells. These results result suggest that (i) the RuvAB and RecG branch migrating DNA helicases, the RecU Holliday junction (HJ) resolvase, and RecD bias HJ resolution towards noncrossovers and that (ii) Sms (RadA) and SubA proteins might play a role in the stabilization and or processing of HJ intermediates.
机译:在其他rec +背景下,分类为ɛ(ruvA,ΔruvB,ΔrecU和recD)和η(ΔrecG)上位性基团的枯草芽孢杆菌突变体使细胞的染色体分离受损。在ΔrecA和Δsms(ΔradA)细胞中观察到的发音不那么明显。 addAB,ΔrecO,ΔrecR,recH,ΔrecS和ΔsubA细胞的修复缺陷与染色体分离缺陷无关。 ɛ上位性基团突变体对DNA破坏剂的敏感性与暴露于该剂时持续的DNA复制有关。 Δsms(ΔradA)和ΔsubA突变部分抑制ruvA和recD细胞的DNA修复缺陷以及ruvA和ΔrecG细胞的分离缺陷。 Δsms(ΔradA)和ΔsubA突变部分抑制ΔrecU细胞的DNA修复缺陷,但不抑制这些细胞中的分离缺陷。 ΔrecA突变可抑制分离缺陷,但不能抑制ΔrecU细胞中的DNA修复缺陷。这些结果表明(i)RuvAB和RecG分支迁移的DNA解旋酶,RecU霍利迪结(HJ)解酶和RecD偏向非交叉的HJ分辨率,以及(ii)Sms(RadA)和SubA蛋白可能在HJ中间体的稳定和/或加工。

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