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首页> 外文期刊>Nucleic Acids Research >Alteration in the cavity size adjacent to the active site of RB69 DNA polymerase changes its conformational dynamics
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Alteration in the cavity size adjacent to the active site of RB69 DNA polymerase changes its conformational dynamics

机译:与RB69 DNA聚合酶活性位点相邻的空腔大小的改变会改变其构象动力学

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摘要

Internal cavities are a common feature of many proteins, often having profound effects on the dynamics of their interactions with substrate and binding partners. RB69 DNA polymerase (pol) has a hydrophobic cavity right below the nucleotide binding pocket at the tip of highly conserved L415 side chain. Replacement of this residue with Gly or Met in other B family pols resulted in higher mutation rates. When similar substitutions for L415 were introduced into RB69pol, only L415A and L415G had dramatic effects on pre-steady-state kinetic parameters, reducing base selectivity by several hundred fold. On the other hand, the L415M variant behaved like the wild-type. Using a novel tC(o)-tC(nitro) Forster Resonance Energy Transfer (FRET) assay, we were able to show that the partition of the primer terminus between pol and exonuclease (exo) domains was compromised with the L415A and L415G mutants, but not with the L415M variant. These results could be rationalized by changes in their structures as determined by high resolution X-ray crystallography.
机译:内腔是许多蛋白质的共同特征,通常会对其与底物和结合伴侣的相互作用动力学产生深远影响。 RB69 DNA聚合酶(pol)在高度保守的L415侧链末端的核苷酸结合袋正下方具有疏水腔。在其他B族pol中用Gly或Met替换此残基会导致更高的突变率。当将类似的L415替代物引入RB69pol时,只有L415A和L415G对稳态前动力学参数具有显着影响,使碱基选择性降低了数百倍。另一方面,L415M变体的行为类似于野生型。使用新颖的tC(o)-tC(硝基)福斯特共振能量转移(FRET)分析,我们能够证明pol和核酸外切酶(exo)域之间的引物末端分配受到L415A和L415G突变体的损害,但不适用于L415M型号。这些结果可以通过高分辨率X射线晶体学确定的结构变化来合理化。

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