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首页> 外文期刊>Structure >Conformational Analysis of Processivity Clamps in Solution Demonstrates that Tertiary Structure Does Not Correlate with Protein Dynamics
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Conformational Analysis of Processivity Clamps in Solution Demonstrates that Tertiary Structure Does Not Correlate with Protein Dynamics

机译:溶液中的过程性钳位的构象分析表明,三级结构与蛋白质动力学不相关

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摘要

The relationship between protein sequence, structure, and dynamics has been elusive. Here, we report a comprehensive analysis using an in-solution experimental approach to study how the conservation of tertiary structure correlates with protein dynamics. Hydrogen exchange measurements of eight processivity clamp proteins from different species revealed that, despite highly similar three-dimensional structures, clamp proteins display a wide range of dynamic behavior. Differences were apparent both for structurally similar domains within proteins and for corresponding domains of different proteins. Several of the clamps contained regions that underwent local unfolding with different half-lives. We also observed a conserved pattern of alternating dynamics of the a helices lining the inner pore of the clamps as well as a correlation between dynamics and the number of salt bridges in these a helices. Our observations reveal that tertiary structure and dynamics are not directly correlated and that primary structure plays an important role in dynamics.
机译:蛋白质序列,结构和动力学之间的关系一直难以捉摸。在这里,我们报告使用溶液中实验方法进行的全面分析,以研究三级结构的保守性如何与蛋白质动力学相关。氢交换测量来自不同物种的八个过程性钳制蛋白显示,尽管三维结构高度相似,钳制蛋白仍显示出广泛的动态行为。对于蛋白质内结构相似的结构域和不同蛋白质的相应结构域,差异都是显而易见的。几个夹具包含以不同的半衰期经历局部展开的区域。我们还观察到了一个线性变化的守恒模式,该线性变化位于夹层内部孔内,并且动态关系与这些螺旋中盐桥的数量之间存在相关性。我们的观察表明,三级结构和动力学并不直接相关,而一级结构在动力学中起着重要作用。

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