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利用溶液核磁共振、X射线散射和蛋白质工程对HIV-1核衣壳采样的构象空间进行定量表征

Quantitative Characterization of Configurational Space Sampled by HIV-1 Nucleocapsid Using Solution NMR, X-ray Scattering and Protein Engineering.

作者信息

Deshmukh Lalit, Schwieters Charles D, Grishaev Alexander, Clore G Marius

机构信息

Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD, 20892-0520, USA.

Imaging Sciences Laboratory, Center for Information and Technology, Bethesda, MD, 20892-5624, USA.

出版信息

Chemphyschem. 2016 Jun 3;17(11):1548-52. doi: 10.1002/cphc.201600212. Epub 2016 Mar 16.

Abstract

Nucleic-acid-related events in the HIV-1 replication cycle are mediated by nucleocapsid, a small protein comprising two zinc knuckles connected by a short flexible linker and flanked by disordered termini. Combining experimental NMR residual dipolar couplings, solution X-ray scattering and protein engineering with ensemble simulated annealing, we obtain a quantitative description of the configurational space sampled by the two zinc knuckles, the linker and disordered termini in the absence of nucleic acids. We first compute the conformational ensemble (with an optimal size of three members) of an engineered nucleocapsid construct lacking the N- and C-termini that satisfies the experimental restraints, and then validate this ensemble, as well as characterize the disordered termini, using the experimental data from the full-length nucleocapsid construct. The experimental and computational strategy is generally applicable to multidomain proteins. Differential flexibility within the linker results in asymmetric motion of the zinc knuckles which may explain their functionally distinct roles despite high sequence identity. One of the configurations (populated at a level of ≈40 %) closely resembles that observed in various ligand-bound forms, providing evidence for conformational selection and a mechanistic link between protein dynamics and function.

摘要

HIV-1复制周期中与核酸相关的事件由核衣壳介导,核衣壳是一种小蛋白,由两个锌指结构通过一个短的柔性连接子相连,两侧为无序末端。我们将实验性核磁共振剩余偶极耦合、溶液X射线散射和蛋白质工程与系综模拟退火相结合,得到了在无核酸情况下两个锌指结构、连接子和无序末端所采样的构象空间的定量描述。我们首先计算了一个缺失N端和C端的工程化核衣壳构建体的构象系综(最佳大小为三个成员),该系综满足实验限制条件,然后使用全长核衣壳构建体的实验数据对该系综进行验证,并对无序末端进行表征。该实验和计算策略普遍适用于多结构域蛋白。连接子内的差异灵活性导致锌指结构的不对称运动,这可能解释了尽管序列同源性高但它们功能不同的原因。其中一种构象(约40%的水平存在)与在各种配体结合形式中观察到的构象非常相似,为构象选择以及蛋白质动力学与功能之间的机制联系提供了证据。

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