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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >MutS interaction with mismatch and alkylated base containing DNA molecules detected by optical biosensor.
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MutS interaction with mismatch and alkylated base containing DNA molecules detected by optical biosensor.

机译:通过光学生物传感器检测到MutS与错配和含有烷基化碱基的DNA分子的相互作用。

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摘要

An optical biosensor was used to monitor interactions between the Escherichia coli DNA mismatch repair molecule MutS and various immobilized oligonucleotides. While associating poorly with single-stranded DNA, MutS was capable of rapid association/dissociation from homoduplex DNA. The interaction of MutS with oligonucleotide 30-mers containing single site mismatches demonstrated that during the dissociation phase, MutS binding was greatest to a G-G mismatch, followed by G-T > A-A > C-T, A-C. Binding to A-G, T-T and C-C mispairs was marginally higher than that seen between MutS and homoduplex DNA. The ability of MutS to interact with 30-mers containing alkylated bases was also tested. While binding to O6-methyl-G-C, or to O4-methyl-T-A base pairs was similar to that of homoduplex DNA, strong binding was seen to a O6-methyl-G-T mispair. O4-methyl-T-G, however, was poorly recognized by MutS, with relative binding affinity similar to homoduplex DNA, predicting poor in vivo recognition of O4-methyl-T-G by MutS. Interestingly, MutS demonstrated a relatively high affinity for an 1,N6-etheno-A-T containing homoduplex. Thus, in allowing rapid evaluation of interactions between such molecules, the biosensor will be useful to structure-function analyses.
机译:光学生物传感器用于监测大肠杆菌DNA错配修复分子MutS与各种固定的寡核苷酸之间的相互作用。尽管与单链DNA的结合较弱,但MutS能够与同双链DNA快速结合/解离。 MutS与含有单位点错配的寡聚核苷酸30-mer的相互作用表明,在解离阶段,MutS结合最大程度地影响G-G错配,其次是G-T> A-A> C-T,A-C。与A-G,T-T和C-C错配的结合比在MutS和同源双链DNA之间的结合略高。还测试了MutS与包含烷基化碱的30-mers相互作用的能力。虽然与O6-甲基-G-C或O4-甲基-T-A碱基对的结合与同源双链DNA相似,但与O6-甲基-G-T错配的结合很强。但是,MutS不能很好地识别O4-甲基-T-G,其相对结合亲和力类似于同源双链DNA,这预示着MutS在体内对O4-甲基-T-G的识别能力很差。有趣的是,MutS对包含1,N6-乙炔-A-T的同源双链体表现出较高的亲和力。因此,在允许快速评估此类分子之间的相互作用时,生物传感器将对结构功能分析有用。

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