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3′-Terminated Overhangs Regulate DNA Double-Strand Break Processing in Escherichia coli

机译:3端悬突调节大肠杆菌中的DNA双链断裂过程。

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摘要

Double-strand breaks (DSBs) are lethal DNA lesions, which are repaired by homologous recombination in Escherichia coli. To study DSB processing in vivo, we induced DSBs into the E. coli chromosome by γ-irradiation and measured chromosomal degradation. We show that the DNA degradation is regulated by RecA protein concentration and its rate of association with single-stranded DNA (ssDNA). RecA decreased DNA degradation in wild-type, recB, and recD strains, indicating that it is a general phenomenon in E. coli. On the other hand, DNA degradation was greatly reduced and unaffected by RecA in the recB1080 mutant (which produces long overhangs) and in a strain devoid of four exonucleases that degrade a 3′ tail (ssExos). 3′–5′ ssExos deficiency is epistatic to RecA deficiency concerning DNA degradation, suggesting that bound RecA is shielding the 3′ tail from degradation by 3′–5′ ssExos. Since 3′ tail preservation is common to all these situations, we infer that RecA polymerization constitutes a subset of mechanisms for preserving the integrity of 3′ tails emanating from DSBs, along with 3′ tail’s massive length, or prevention of their degradation by inactivation of 3′–5′ ssExos. Thus, we conclude that 3′ overhangs are crucial in controlling the extent of DSB processing in E. coli. This study suggests a regulatory mechanism for DSB processing in E. coli, wherein 3′ tails impose a negative feedback loop on DSB processing reactions, specifically on helicase reloading onto dsDNA ends.
机译:双链断裂(DSB)是致命的DNA损伤,可通过在大肠杆菌中的同源重组进行修复。为了研究体内DSB的加工过程,我们通过γ射线诱导DSB进入大肠杆菌染色体,并测量了染色体降解。我们表明,DNA降解受RecA蛋白浓度及其与单链DNA(ssDNA)结合的速率调控。 RecA减少了野生型,recB和recD菌株中的DNA降解,表明这是大肠杆菌中的普遍现象。另一方面,在recB1080突变体(产生长的突出端)和没有四个可降解3'尾巴的外切核酸酶(ssExos)的菌株中,DNA降解大大降低且不受RecA影响。 3'-5'ssExos缺乏症与涉及DNA降解的RecA缺乏症相比是上位的,这表明结合的RecA屏蔽了3'-5'ssExos降解的3'尾巴。由于在所有这些情况下3'尾部的保留都是常见的,因此我们推断RecA聚合是保留DSB发出的3'尾部的完整性以及3'尾部的巨大长度的机制的子集,或防止它们通过灭活DB而降解。 3′-5′ssExos。因此,我们得出结论,3'突出端对于控制DSB在大肠杆菌中的加工程度至关重要。这项研究提出了一种在大肠杆菌中进行DSB加工的调节机制,其中3'尾部对DSB加工反应,特别是在解旋酶重载到dsDNA末端上施加了负反馈环。

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