首页> 外文期刊>Nucleic Acids Research >Single-molecule FRET studies of the cooperative and non-cooperative binding kinetics of the bacteriophage T4 single-stranded DNA binding protein (gp32) to ssDNA lattices at replication fork junctions
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Single-molecule FRET studies of the cooperative and non-cooperative binding kinetics of the bacteriophage T4 single-stranded DNA binding protein (gp32) to ssDNA lattices at replication fork junctions

机译:单分子FRET研究复制叉叉处噬菌体T4单链DNA结合蛋白(gp32)与ssDNA晶格的合作和非合作结合动力学

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Gene 32 protein (gp32) is the single-stranded (ss) DNA binding protein of the bacteriophage T4. It binds transiently and cooperatively to ssDNA sequences exposed during the DNA replication process and regulates the interactions of the other sub-assemblies of the replication complex during the replication cycle. We here use single-molecule FRET techniques to build on previous thermodynamic studies of gp32 binding to initiate studies of the dynamics of the isolated and cooperative binding of gp32 molecules within the replication complex. DNA primer/template (p/t) constructs are used as models to determine the effects of ssDNA lattice length, gp32 concentration,- salt concentration, binding cooperativity and binding polarity at p/t junctions. Hidden Markov models (HMMs) and transition density plots (TDPs) are used to characterize the dynamics of the multi-step assembly pathway of gp32 at p/t junctions of differing polarity, and show that isolated gp32 molecules bind to their ssDNA targets weakly and dissociate quickly, while cooperatively bound dimeric or trimeric clusters of gp32 bindmuchmore tightly, can '-slide' on ssDNA sequences, and exhibit binding dynamics that depend on p/t junction polarities. The potential relationships of these binding dynamics to interactions with other components of the T4 DNA replication complex are discussed.
机译:基因32蛋白(gp32)是噬菌体T4的单链(ss)DNA结合蛋白。它与DNA复制过程中暴露的ssDNA序列短暂结合在一起,并在复制周期中调节复制复合物其他子组件的相互作用。我们在这里使用单分子FRET技术来构建先前对gp32结合的热力学研究,从而开始研究复制复合物中gp32分子的分离和协同结合的动力学。 DNA引物/模板(p / t)构建体用作模型,以确定ssDNA晶格长度,gp32浓度,盐浓度,p / t连接处的结合协同性和结合极性的影响。隐马尔可夫模型(HMM)和跃迁密度图(TDP)用于表征gp32在不同极性的p / t交界处的多步组装途径的动力学,并显示分离的gp32分子弱结合到其ssDNA目标上,快速解离,而更紧密地结合在一起的gp32二聚体或三聚体簇紧密结合时,可以在ssDNA序列上“滑动”,并表现出依赖于p / t连接极性的结合动力学。讨论了这些结合动力学与与T4 DNA复制复合体其他成分相互作用的潜在关系。

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    《Nucleic Acids Research》 |2016年第22期|共20页
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