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缺乏核糖核酸酶HI和核酸外切酶V活性的大肠杆菌细胞生存能力对同源重组功能的需求。

Requirement of homologous recombination functions for viability of the Escherichia coli cell that lacks RNase HI and exonuclease V activities.

作者信息

Kogoma T, Hong X, Cadwell G W, Barnard K G, Asai T

机构信息

Department of Cell Biology, University of New Mexico School of Medicine, Albuquerque 87131.

出版信息

Biochimie. 1993;75(1-2):89-99. doi: 10.1016/0300-9084(93)90029-r.

Abstract

rnhA224 and rnhA339::cat mutants which lack RNase HI activity were found to constitutively express the sfiA::lacZ operon fusion in a recA+ lexA(+)-dependent manner. The sfiA::lacZ expression (indicating SOS induction) in rnhA mutants was increased to higher levels by the introduction of the recD1903 or recB21 mutation. The SOS induction in these cells was further enhanced by nutritional shift up from casamino acid medium to Luria broth. Although the extent by which the recD and recB mutations increased the sfiA expression in rnhA mutants was similar, the rnhA224 recB21 double mutant had plating efficiencies that were 25-fold lower on casamino acid plates and 5 x 10(5)-fold lower on Luria broth plates than the respective plating efficiencies of either rnhA224 recD or rnhA::cat recD double mutants. Whereas the recD mutation inactivates the exonuclease activity of the RecBCD (Exo V) enzyme without reducing the recombination proficiency of the mutant, the recB21 mutation abolishes both the exonuclease activity and recombination capability. Therefore, in the absence of both RNase HI and Exo V activities, homologous recombination functions become crucial for viability, particularly in Luria broth. Introduction of mutations in recA, recJ and recN exacerbated the phenotypes. It is proposed that R-loops which persist due to the lack of RNase HI activity can be removed by two alternative routes of DNA repair: one involving Exo V, Exo I and DNA polymerase I, and the other involving both the RecBCD and RecF pathways of homologous recombination activities. The isolation of RNA polymerase mutants that constitutively express the SOS response at high levels and exhibit remarkable broth-sensitivity lend strong support to the contention that increased amounts of the persisting R-loop in rnhA mutants growing in Luria broth give rise to a stronger SOS response.

摘要

缺乏核糖核酸酶HI活性的rnhA224和rnhA339::cat突变体被发现以recA+lexA(+)依赖的方式组成型表达sfiA::lacZ操纵子融合体。通过引入recD1903或recB21突变,rnhA突变体中的sfiA::lacZ表达(表明SOS诱导)增加到更高水平。从酪蛋白氨基酸培养基营养转移到Luria肉汤进一步增强了这些细胞中的SOS诱导。尽管recD和recB突变增加rnhA突变体中sfiA表达的程度相似,但rnhA224 recB21双突变体在酪蛋白氨基酸平板上的平板效率比rnhA224 recD或rnhA::cat recD双突变体各自的平板效率低25倍,在Luria肉汤平板上低5×10(5)倍。recD突变使RecBCD(外切核酸酶V)酶的外切核酸酶活性失活,而不降低突变体的重组能力,而recB21突变则同时消除了外切核酸酶活性和重组能力。因此,在缺乏核糖核酸酶HI和外切核酸酶V活性的情况下,同源重组功能对于生存能力变得至关重要,特别是在Luria肉汤中。recA、recJ和recN中的突变引入加剧了表型。有人提出,由于缺乏核糖核酸酶HI活性而持续存在的R环可以通过两种替代的DNA修复途径去除:一种涉及外切核酸酶V、外切核酸酶I和DNA聚合酶I,另一种涉及同源重组活性的RecBCD和RecF途径。组成型高水平表达SOS反应并表现出显著肉汤敏感性的RNA聚合酶突变体的分离有力地支持了这样的论点,即在Luria肉汤中生长的rnhA突变体中持续存在的R环数量增加会引起更强的SOS反应。

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