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首页> 外文期刊>Journal of Molecular Biology >HELIX-DESTABILIZING ACTIVITY OF PHI-29 SINGLE-STRANDED DNA BINDING PROTEIN - EFFECT ON THE ELONGATION RATE DURING STRAND DISPLACEMENT DNA REPLICATION
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HELIX-DESTABILIZING ACTIVITY OF PHI-29 SINGLE-STRANDED DNA BINDING PROTEIN - EFFECT ON THE ELONGATION RATE DURING STRAND DISPLACEMENT DNA REPLICATION

机译:PHI-29单链DNA结合蛋白的螺旋破坏活性-对链置换DNA复制过程中延伸率的影响

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The single-stranded DNA (ssDNA)-binding protein (SSB) of bacteriophage Phi 29 is one of the virus-encoded proteins required for viral DNA replication. We have found that Phi 29 SSB has helix-destabilizing activity since it removes secondary structure of the ssDNA in Phi 29 replicative intermediates, as revealed by electron microscopy, and displaces oligonucleotides annealed to M13 ssDNA. To investigate the mechanism of the SSB-dependent stimulation of Phi 29 DNA replication we have characterized the helix-destabilizing activity of Phi 29 SSB and measured its effect on the DNA elongation rate by Phi 29 DNA polymerase, which does not require an accessory helicase. The use of replication reactions where strand displacement is either required (Phi 29 DNA replication) or not (conversion of primed M13 ssDNA into double-stranded DNA (dsDNA)) has allowed us to find that (1) strand displacement DNA replication was affected by lowering the temperature or by increasing the salt concentration, since the DNA elongation rate on the Phi 29 template was three to fourfold slower than on primed M13 ssDNA, (2) under those conditions, addition of Phi 29 SSB stimulated to different extents the DNA elongation rate during Phi 29 DNA replication, whereas it had a marginal effect on primed M13 ssDNA replication, and (3) Phi 29 SSB increased four to sixfold the Phi 29 DNA elongation rate by Phi 29 DNA polymerase strand displacement mutants, reaching similar to 50% the rate of the wild-type enzyme. The implications of the helix-destabilizing properties of the Phi 29 SSB under conditions in which DNA opening is impaired are discussed. (C) 1995 Academic Press Limited [References: 63]
机译:噬菌体Phi 29的单链DNA(ssDNA)结合蛋白(SSB)是病毒DNA复制所需的病毒编码蛋白之一。我们已经发现,Phi 29 SSB具有螺旋不稳定的活性,因为它通过电子显微镜揭示了去除Phi 29复制中间体中ssDNA的二级结构,并取代了退火至M13 ssDNA的寡核苷酸。为了研究依赖SSB的Phi 29 DNA复制的刺激机制,我们表征了Phi 29 SSB的螺旋破坏活性,并通过不需要辅助解旋酶的Phi 29 DNA聚合酶测量了其对DNA延伸速率的影响。在不需要链置换(Phi 29 DNA复制)或不需要链置换(引发的M13 ssDNA转化为双链DNA(dsDNA))的情况下使用复制反应,使我们发现(1)链置换DNA复制受到以下因素的影响:降低温度或增加盐浓度,因为Phi 29模板上的DNA延伸速率比引物M13 ssDNA慢三至四倍,(2)在这些条件下,添加Phi 29 SSB可以在不同程度上刺激DNA延伸Phi 29 DNA复制过程中的速率增加,而对引发的M13 ssDNA复制影响很小,(3)Phi 29 DNA的Phi 29 DNA聚合酶链置换突变体使Phi 29 DNA延伸率增加了4到6倍,接近50%野生型酶的比率。讨论了在DNA受损的条件下,Phi 29 SSB的螺旋不稳定特性的含义。 (C)1995 Academic Press Limited [参考号:63]

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