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Enzyme Selectivity Fine-Tuned through Dynamic Control of a Loop

机译:通过动态控制回路微调酶的选择性

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摘要

Allostery has been revealed as an essential property of all proteins. For enzymes, shifting of the structural equilibrium distribution at one site can have substantial impacts on protein dynamics and selectivity. Promising sites of remotely shifting such a distribution by changing the dynamics would be at flexible loops because relatively large changes may be achieved with minimal modification of the protein. A ligand-selective change of binding affinity to the active site of cyclophilin is presented involving tuning of the dynamics of a highly flexible loop. Binding affinity is increased upon substitution of double Gly to Ala at the hinge regions of the loop. Quenching of the motional amplitudes of the loop slightly rearranges the active site. In particular, key residues for binding Phe60 and His126 adopt a more fixed orientation in the bound protein. Our system may serve as a model system for studying the effects of various time scales of loop motion on protein function tuned by mutations.
机译:变构已被揭示为所有蛋白质的基本特性。对于酶而言,结构平衡分布在一个位点的移动可能会对蛋白质动力学和选择性产生重大影响。通过改变动力学来远程改变这种分布的有希望的位置将处于灵活的循环,因为可以用最小的蛋白质修饰实现相对较大的改变。提出了对亲环蛋白活性位点的结合亲和力的配体选择性变化,涉及到高度柔性环的动力学调节。当双Gly在环的铰链区被Ala取代时,结合亲和力增加。环路运动幅度的淬灭会稍微重新排列活动位置。特别地,结合Phe60和His126的关键残基在结合的蛋白质中采用更固定的方向。我们的系统可以用作模型系统,以研究循环运动的各种时间尺度对突变调节的蛋白质功能的影响。

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