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G-quadruplex recognition activities of E. Coli MutS

机译:大肠埃希氏菌MutS的G-四链体识别活动

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摘要

BackgroundGuanine quadruplex (G4 DNA) is a four-stranded structure that contributes to genome instability and site-specific recombination. G4 DNA folds from sequences containing tandemly repetitive guanines, sequence motifs that are found throughout prokaryote and eukaryote genomes. While some cellular activities have been identified with binding or processing G4 DNA, the factors and pathways governing G4 DNA metabolism are largely undefined. Highly conserved mismatch repair factors have emerged as potential G4-responding complexes because, in addition to initiating heteroduplex correction, the human homologs bind non-B form DNA with high affinity. Moreover, the MutS homologs across species have the capacity to recognize a diverse range of DNA pairing variations and damage, suggesting a conserved ability to bind non-B form DNA.
机译:背景鸟嘌呤四链体(G4 DNA)是一种四链结构,有助于基因组不稳定和位点特异性重组。 G4 DNA来自包含串联重复鸟嘌呤的序列的折叠,这些序列是在原核生物和真核生物基因组中都发现的序列基序。虽然已经鉴定出一些细胞活性是通过结合或加工G4 DNA来进行的,但控制G4 DNA代谢的因素和途径尚不清楚。高度保守的错配修复因子已作为潜在的G4响应复合物出现,因为除了启动异源双链体校正外,人类同源物还以高亲和力结合非B型DNA。此外,跨物种的MutS同源物具有识别各种范围的DNA配对变异和破坏的能力,这表明结合非B型DNA的保守能力。

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