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Entropic Folding Pathway of Human Epidermal Growth Factor Explored by Disulfide Scrambling and Amplified Collective Motion Simulations

机译:二硫化糖浆求探索的人表皮生长因子的熵折叠途径和扩增集体运动模拟

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摘要

Epidermal growth factor (EGF) regulates cell proliferation and differentiation by binding to the EGF receptor (EGFR) extra-cellular domains.Human EGF is a small,single-chain protein comprising three distinct loops (A,B,and C),which are connected by three disulfide bridges (Cys6-Cys20,Cys14- Cys31,and Cys33-Cys42).These disulfide bridges are essential for structural stability and biological activity.EGF was extensively studied by disulfide scrambling,an experimental technique for the conformational entrapment of intermediate states,which allows us to study the folding pathway of proteins containing disulfide bonds.The experimental results showed that there is a major 2-disulfide intermediate (denoted EGF-II) and that the native disulfide bonding pattern is less prevalent in one of the mutants.In this article,we investigated for the first time the solution conformations of wild-type EGF,EGF-II,and the mutant S9C through extensive molecular dynamics (MD) simulations in water using both the standard MD technique and a recently developed amplified-collective-motion (ACM) sampling method.Compared to standard MD simulations,we achieved a much more enhanced sampling by the ACM simulations,and the structures were sufficiently relaxed to estimate configurational entropies.The simulation results suggest a predominantly entropic folding pathway governed by the disorder of three functional loop regions.Although EGF-II exhibits two native disulfide bonds (Cysl4-Cys31 and Cys33- Cys42),its large configurational entropy inhibits a direct transition to the native structure in the folding process.When Ser9 is mutated into Cys,a non-native disulfide bridge Cys9- Cys20 is slightly more favorable than the native Cys6-Cys20 because a less constrained N-terminus affords larger entropy.Isomers that are functionally less active also exhibit a more localized dynamics of the functional loop regions,which may suggest a possible mechanism for the modulation of EGF activity.
机译:表皮生长因子(EGF)通过结合EGF受体(EGFR)细胞间域来调节细胞增殖和分化。一只少,单链蛋白质,包括三个不同的环(A,B和C),其是用三种二硫化物桥(Cys6-Cys20,Cys14-Cys31和Cys33-Cys42)连接。这些二硫桥对于结构稳定性,生物活性至关重要。通过二硫化物加扰,可以进行广泛研究中间状态的实验技术.Egf。 ,这使我们能够研究含二硫键的蛋白质的折叠途径。实验结果表明,存在主要的2-二硫化物中间体(表示的EGF-II),并且在其中一种突变体中较少普遍普遍的二硫键中间体(表示的EGF-II)。在本文中,我们首次调查了野生型EGF,EGF-II和突变体S9c的溶液构象,通过使用了水中的水中的广泛的分子动态(MD)模拟E标准MD技术和最近开发的放大集体 - 运动(ACM)采样方法。我们对标准MD仿真进行了分析,我们通过ACM模拟实现了更高的增强的采样,并且结构足够放松以估计配置熵。模拟结果表明,由三个功能环区域的疾病治理的主要熵折叠途径。虽然EGF-II表现出两种天然二硫键(Cysl4-Cys31和Cys33-Cys42),但其大型配置熵抑制了直接过渡到原生结构折叠过程。当Ser9被突变成Cys时,非天然二硫化物桥Cys9-Cys20比天然Cys6-Cys20稍微有利,因为不受限制的N-Terminus提供了更大的熵。功能较低的活性也有更多功能循环区域的局部动态,可以提出用于调制EGF活动的可能机制。

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  • 来源
    《Biochemistry》 |2006年第51期|共10页
  • 作者单位

    School of Health Information Sciences University of Texas Health Science Center at Houston 7000 Fannin Street Suite 600 Houston Texas 77030 and Research Center for Protein Chemistry Brown Foundation Institute of Molecular Medicine University of Texas;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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