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首页> 外文期刊>Journal of Molecular Biology >DNA binding mediates conformational changes and metal ion coordination in the active site of PcrA helicase.
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DNA binding mediates conformational changes and metal ion coordination in the active site of PcrA helicase.

机译:DNA结合在PcrA解旋酶的活性位点介导构象变化和金属离子配位。

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摘要

Based upon the crystal structures of PcrA helicase, we have made and characterised mutations in a number of conserved helicase signature motifs around the ATPase active site. We have also determined structures of complexes of wild-type PcrA with ADPNP and of a mutant PcrA complexed with ADPNP and Mn2+. The kinetic and structural data define roles for a number of different residues in and around the ATP binding site. More importantly, our results also show that there are two functionally distinct conformations of ATP in the active site. In one conformation, ATP is hydrolysed poorly whereas in the other (activated) conformation, ATP is hydrolysed much more rapidly. We propose a mechanism to explain how the stimulation of ATPase activity afforded by binding of single-stranded DNA stabilises the activated conformation favouring Mg2+binding and a consequent repositioning of the gamma-phosphate group which promotes ATP hydrolysis. A part of the associated conformational change in the protein forces the side-chain of K37 to vacate the Mg2+binding site, allowing the cation to bind and interact with ATP. Copyright 1999 Academic Press.
机译:基于PcrA解旋酶的晶体结构,我们在ATPase活性位点周围的许多保守解旋酶签名基序中进行了突变并进行了表征。我们还确定了野生型PcrA与ADPNP的复合物以及与ADPNP和Mn2 +复合的突变型PcrA的复合物的结构。动力学和结构数据定义了ATP结合位点内和周围许多不同残基的作用。更重要的是,我们的结果还表明,活性位点中有两个功能上不同的ATP构象。在一种构象中,ATP水解不佳,而在另一种(活化)构象中,ATP水解得更快。我们提出了一种机制来解释如何通过单链DNA结合刺激ATPase活性来稳定活化的构象,从而有利于Mg2 +结合并随后重新定位促进ATP水解的γ-磷酸基团。蛋白质中相关的构象变化的一部分迫使K37的侧链脱离Mg2 +结合位点,从而使阳离子与ATP结合并相互作用。版权所有1999,学术出版社。

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