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Disentangling the Coil: Modulation of Conformational and Dynamic Properties by Site-Directed Mutation in the Non-Native State of Hen Egg White Lysozyme

机译:解开线圈:母鸡蛋清溶菌酶的非天然状态下的定点突变构象和动态特性的调制。

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摘要

The conformational analysis of non-native states of proteins remains one of the most difficult problems in structural biology, because such states are represented by a superimposition of several states that are rapidly interconverting. Hence, model building of the conformational ensemble remains challenging, although many different biophysical observables can be determined in non-native states of proteins. Here, we present a com-prehensive analysis of non-native states of wild-type and mutant forms of the model protein lysozyme by nuclear magnetic resonance spectroscopy. Relaxation rates, chemical shifts, backbone and side chain coupling constants, residual dipolar couplings, diffusion rate constants, and small-angle scattering data merged with computational approaches, such as flexible meccano and ASTEROIDS, allow the description of the non-native state of hen egg white lysozyme in unprecedented detail.
机译:蛋白质非天然状态的构象分析仍然是结构生物学中最困难的问题之一,因为这种状态由快速相互转换的几种状态的叠加表示。因此,尽管可以在蛋白质的非天然状态下确定许多不同的生物物理可观察物,但是构象整体的模型构建仍然具有挑战性。在这里,我们通过核磁共振波谱对模型蛋白溶菌酶的野生型和突变形式的非天然状态进行综合分析。弛豫速率,化学位移,主链和侧链偶联常数,残余偶极偶联,扩散速率常数以及与诸如柔性meccano和ASTEROIDS之类的计算方法合并的小角度散射数据可用于描述母鸡的非天然状态蛋清溶菌酶史无前例的细节。

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