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Net charge per residue modulates conformational ensembles of intrinsically disordered proteins

机译:每个残基的净电荷调节内在无序蛋白的构象集合

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摘要

Intrinsically disordered proteins (IDPs) adopt heterogeneous ensembles of conformations under physiological conditions. Understanding the relationship between amino acid sequence and conformational ensembles of IDPs can help clarify the role of disorder in physiological function. Recent studies revealed that polar IDPs favor collapsed ensembles in water despite the absence of hydrophobic groups-a result that holds for polypeptide backbones as well. By studying highly charged polypeptides, a different archetype of IDPs, we assess how charge content modulates the intrinsic preference of polypeptide backbones for collapsed structures. We characterized conformational ensembles for a set of protamines in aqueous milieus using molecular simulations and fluorescence measurements. Protamines are arginine-rich IDPs involved in the condensation of chromatin during spermatogenesis. Simulations based on the ABSINTH implicit solvation model predict the existence of a globule-to-coil transition, with net charge per residue serving as the discriminating order parameter. The transition is supported by quantitative agreement between simulation and experiment. Local conformational preferences partially explain the observed trends of polymeric properties. Our results lead to the proposal of a schematic protein phase diagram that should enable prediction of polymeric attributes for IDP conformational ensembles using easily calculated physicochemical properties of amino acid sequences. Although sequence composition allows the prediction of polymeric properties, interresidue contact preferences of protamines with similar polymeric attributes suggest that certain details of conformational ensembles depend on the sequence. This provides a plausible mechanism for specificity in the functions of IDPs.
机译:本质上无序的蛋白质(IDP)在生理条件下采用异质构象组合。了解氨基酸序列与IDP构象序列之间的关系可以帮助阐明疾病在生理功能中的作用。最近的研究表明,尽管没有疏水基团,极性IDP仍支持水中的塌陷团簇-多肽骨架也是如此。通过研究高电荷的多肽,IDP的不同原型,我们评估了电荷含量如何调节多肽骨架对折叠结构的固有偏好。我们使用分子模拟和荧光测量表征了水环境中一组鱼精蛋白的构象合奏。鱼精蛋白是精子形成过程中参与染色质浓缩的精氨酸丰富的IDP。基于ABSINTH隐式溶剂化模型的模拟预测了球状至线圈状过渡的存在,每个残基的净电荷用作判别参数。模拟和实验之间的定量协议为过渡提供了支持。局部构象偏好部分地解释了所观察到的聚合物性质的趋势。我们的结果导致提出了示意性蛋白质相图的提议,该蛋白相图应能够使用容易计算的氨基酸序列的理化性质来预测IDP构象集合的聚合属性。尽管序列组成可以预测聚合物的性质,但是具有相似聚合物属性的鱼精蛋白的残基间接触偏好表明构象集合体的某些细节取决于序列。这为IDP功能的特异性提供了一种合理的机制。

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    Computational and Molecular Biophysics Program, Division of Biology and Biomedical Sciences, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899 Computational and Molecular Biophysics Program, Center for Computational Biology, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899 Computational and Molecular Biophysics Program, Medical Scientist Training Program, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899;

    rnComputational and Molecular Biophysics Program, Center for Computational Biology, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899 Department of Biomedical Engineering, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899;

    rnComputational and Molecular Biophysics Program, Division of Biology and Biomedical Sciences, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899 Computational and Molecular Biophysics Program, Center for Computational Biology, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899;

    rnDepartment of Biomedical Engineering, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899;

    rnComputational and Molecular Biophysics Program, Division of Biology and Biomedical Sciences, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899 Computational and Molecular Biophysics Program, Center for Computational Biology, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899 Department of Biomedical Engineering, One Brookings Drive, Campus Box 1097, VVashington University in St. Louis, St. Louis, MO 63130-4899;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    monte carlo; polyampholyte; polyelectrolyte;

    机译:蒙特卡洛;聚两性电解质聚电解质;

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