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The Ambivalent Role of Proline Residues in an Intrinsically Disordered Protein: From Disorder Promoters to Compaction Facilitators

机译:脯氨酸残基在内在无序蛋白质中的矛盾作用:从疾病启动子来压实促进者

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Intrinsically disordered proteins (IDPs) carry out many biological functions. They lack a stable three-dimensional structure, but rather adopt many different conformations in dynamic equilibrium. The interplay between local dynamics and global rearrangements is key for their function. In IDPs, proline residues are significantly enriched. Given their unique physicochemical and structural properties, a more detailed understanding of their potential role in stabilizing partially folded states in IDPs is highly desirable. Nuclear magnetic resonance (NMR) spectroscopy, and in particular C-13-detected NMR, is especially suitable to address these questions. We applied a C-13-detected strategy to study Osteopontin, a largely disordered IDP with a central compact region. By using the exquisite sensitivity and spectral resolution of these novel techniques, we gained unprecedented insight into cis-Pro populations, their local structural dynamics, and their role in mediating long-range contacts. Our findings clearly call for a reassessment of the structural and functional role of proline residues in IDPs. The emerging picture shows that proline residues have ambivalent structural roles. They are not simply disorder promoters but rather can, depending on the primary sequence context, act as nucleation sites for structural compaction in IDPs. These unexpected features provide a versatile mechanistic toolbox to enrich the conformational ensembles of IDPs with specific features for adapting to changing molecular and cellular environments. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本质无序的蛋白质(IDPS)涉及许多生物学功能。它们缺乏稳定的三维结构,而是采用动态均衡中的许多不同构象。本地动态和全局重新排列之间的相互作用是其功能的关键。在IDPS中,脯氨酸残基被显着富集。鉴于它们独特的物理化学和结构性,更详细地理解其在IDPS中稳定部分折叠状态的潜在作用是非常理想的。核磁共振(NMR)光谱,特别是C-13检测到的NMR,特别适用于解决这些问题。我们应用了C-13检测到的策略来研究骨桥蛋白,具有中央紧凑区域的主要无序的IDP。通过使用这些新颖技术的精致灵敏度和光谱分辨率,我们对CIS-Pro群体,局部结构动态的洞察力探讨,以及它们在介导远程接触方面的作用。我们的调查结果清楚地要求重新评估IDPS中脯氨酸残留的结构和功能性作用。新兴的图表显示脯氨酸残留物具有矛盾的结构作用。它们不仅仅是紊乱的推动者,而是可以根据主要序列背景,作为IDPS结构压缩的成核网站。这些意外功能提供了一个多功能机械工具箱,可以丰富具有特定功能的IDP的构象集合,以适应改变分子和蜂窝环境。 (c)2019 Elsevier Ltd.保留所有权利。

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