首页> 外文期刊>Nucleic Acids Research >Nucleotide excision repair affects the stability of long transcribed (CTG*CAG) tracts in an orientation-dependent manner in Escherichia coli.
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Nucleotide excision repair affects the stability of long transcribed (CTG*CAG) tracts in an orientation-dependent manner in Escherichia coli.

机译:核苷酸切除修复在大肠杆菌中以方向依赖性方式影响长转录(CTG * CAG)区域的稳定性。

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摘要

The influence of nucleotide excision repair (NER), the principal in vivo repair system for DNA damages, was investigated in Escherichia coli with uvrA, uvrB and uvrAuvrB mutants with the triplet repeat sequences (TRS) involved in myotonic dystrophy, the fragile X syndrome and Friedreich's ataxia. (CTG*CAG)175was more stable when the (CTG) strand was transcribed than when the (CAG) strand was transcribed in the alternate orientation. A lack of the UvrA protein dramatically increases the instability of this TRS in vivo as compared with the stability of the same sequence in uvrB mutant, which produces an intact UvrA protein. We propose that transcription transiently dissociates the triplet repeat complementary strands enabling the non-transcribed strand to fold into a hairpin conformation which is then sufficiently stable that replication bypasses the hairpin to give large deletions. If the TRS was not transcribed, fewer deletions were observed. Alternatively, in the uvrA-mutant, the hairpins existing on the lagging strand will suffer bypass DNA synthesis to generate deleted molecules. Hence, NER, functionally similar in both prokaryotes and eukaryotes, is an important factor in the genetic instabilities of long transcribed TRS implicated in human hereditary neuro-logical diseases.
机译:在大肠杆菌中研究了具有DNA损伤的主要体内修复系统核苷酸切除修复(NER)的影响,该菌株具有uvrA,uvrB和uvrAuvrB突变体,其中三重重复序列(TRS)涉及强直性营养不良,脆性X综合征和Friedreich的共济失调。 (CTG)链转录时(CTG * CAG)175比以交替方向转录(CAG)链时更稳定。与产生完整UvrA蛋白的uvrB突变体中相同序列的稳定性相比,缺乏UvrA蛋白会大大增加体内TRS的不稳定性。我们建议转录瞬时解离三联体重复互补链,使非转录链折叠成发夹构象,然后使其足够稳定以使复制绕过发夹以提供大的缺失。如果未转录TRS,则观察到的缺失较少。或者,在uvrA突变体中,存在于落后链上的发夹将经历旁路DNA合成,从而生成缺失的分子。因此,在原核生物和真核生物中功能相似的NER是与人类遗传性神经疾病有关的长转录TRS遗传不稳定性的重要因素。

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