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Natively Unfolded Protein Stability as a Coil-to-Globule Transition in Charge/Hydropathy Space

机译:在电荷/水肿空间中,自然展开的蛋白质稳定性为线圈到小球的过渡

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In the absence of experimental assignments, the empirical charge/hydropathy correlation for the prediction of natively unfolded protein sequences (Uversky, V. N.; Gillespie, J. R.; Fink, A. L. Proteins: Struct, Fund, Genet. 2000, 41, 415-427) provides perhaps the most intuitive description of gross polypeptide conformation. The success of this correlation rests on an essential chain length independence of the boundary line between expanded and compact conformations, conversely stabilized by highly charged/ weakly hydrophobic residues or weakly charged/highly hydrophobic residues, respectively. We present extensive simulation results for coarse-grained polypeptides over a wide range of sequence hydrophobicities, charges, and lengths. A coil-to-globule transition in sequence composition space analogous to the charge/ hydropathy correlation is observed. A near sequence length independent stability boundary is only found when counterions for the charged peptides are explicitly included, as a result of counterion condensation stabilization of repulsive electrostatic interactions on the globule surface. The observed counterion adsorption is shown to be in quantitative agreement with theoretical condensation predictions. We argue that alternate functionalities, beyond charge and hydrophobicity, empirically known to correlate with conformational disorder can be incorporated into our minimalist polypeptide model to study the interplay between independent predictors of unfolded sequences.
机译:在缺乏实验任务的情况下,用于预测天然未折叠蛋白序列的经验电荷/亲水性相关性(Uversky,VN; Gillespie,JR; Fink,AL Proteins:Struct,Fund,Gen​​et。2000,41,415-427)提供了也许是总多肽构象的最直观描述。这种相关性的成功取决于扩展构象和紧密构象之间边界线的基本链长独立性,相反,分别由高电荷/弱疏水残基或弱电荷/高疏水残基稳定。我们在广泛的序列疏水性,电荷和长度范围内为粗粒多肽提供广泛的模拟结果。观察到类似于电荷/亲水性相关性的序列组成空间中的线圈到球的过渡。仅当明确包含带电肽的抗衡离子时,才发现与序列长度无关的稳定边界,这是由于小球表面上排斥性静电相互作用的抗衡离子缩合稳定作用的结果。显示观察到的抗衡离子吸附与理论缩合预测在数量上一致。我们认为,经验上已知与构象障碍相关的除电荷和疏水性以外的其他功能可以纳入我们的简约多肽模型中,以研究未折叠序列的独立预测因子之间的相互作用。

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  • 来源
    《Journal of the American Chemical Society》 |2008年第29期|9536-9542|共7页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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
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  • 入库时间 2022-08-18 03:19:43

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