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首页> 外文期刊>Protein and peptide letters >Structural Disorder within Sendai Virus Nucleoprotein and Phosphoprotein: Insight into the Structural Basis of Molecular Recognition
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Structural Disorder within Sendai Virus Nucleoprotein and Phosphoprotein: Insight into the Structural Basis of Molecular Recognition

机译:仙台病毒核蛋白和磷酸蛋白内的结构障碍:分子识别的结构基础的见解。

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摘要

Intrinsically disordered regions of significant length are present throughout eukaryotic genomes, and are particularly prevalent in viral proteins. Due to their inherent flexibility, these proteins inhabit a conformational landscape that is too complex to be described by classical structural biology. The elucidation of the role that conformational flexibility plays in molecular function will redefine our understanding of the molecular basis of biological function, and the development of appropriate technology to achieve this aim remains one of the major challenges for the future of structural biology. wNMR is the technique of choice for studying intrinsically disordered proteins, providing information about structure, flexibility and interactions at atomic resolution even in completely disordered proteins. In particular residual dipolar couplings (RDCs) are sensitive and powerful tools for determining local and long-range structural behaviour in flexible proteins. Here we describe recent applications of the use of RDCs to quantitatively describe the level of local structure in intrinsically disordered proteins involved in replication and transcription in Sendai virus.
机译:在整个真核基因组中都存在着明显长度的内在无序区,并且在病毒蛋白中尤为普遍。由于它们固有的柔韧性,这些蛋白质占据的构象景观太复杂而无法用经典结构生物学描述。阐明构象柔韧性在分子功能中的作用将重新定义我们对生物学功能的分子基础的理解,开发实现该目标的合适技术仍然是结构生物学未来的主要挑战之一。 wNMR是研究内在无序蛋白的首选技术,即使在完全无序的蛋白中,也能以原子分辨率提供有关结构,柔韧性和相互作用的信息。特别是残留偶极偶合(RDC)是灵敏而功能强大的工具,用于确定柔性蛋白质中的局部和远距离结构行为。在这里,我们描述了使用RDC来量化描述仙台病毒中复制和转录的内在无序蛋白中局部结构水平的最新应用。

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