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本文引用的文献

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Kinetics of loop formation in polymer chains.聚合物链中环化形成的动力学。
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Probing polyproline structure and dynamics by photoinduced electron transfer provides evidence for deviations from a regular polyproline type II helix.通过光诱导电子转移探测聚脯氨酸的结构和动力学,为偏离规则的聚脯氨酸II型螺旋提供了证据。
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A polymer physics perspective on driving forces and mechanisms for protein aggregation.从聚合物物理学角度看蛋白质聚集的驱动力和机制
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Dynamic similarity of the unfolded states of proteins L and G.蛋白质L和G展开状态的动力学相似性。
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Quantitative characterization of intrinsic disorder in polyglutamine: insights from analysis based on polymer theories.聚谷氨酰胺内在无序的定量表征:基于聚合物理论分析的见解
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Interactions between hydrophobic and ionic solutes in aqueous guanidinium chloride and urea solutions: lessons for protein denaturation mechanism.氯化胍和尿素水溶液中疏水性和离子性溶质之间的相互作用:蛋白质变性机制的启示
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Temperature dependence of looping rates in a short peptide.短肽中环化速率的温度依赖性。
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Ultrafast dynamics of protein collapse from single-molecule photon statistics.基于单分子光子统计的蛋白质折叠超快动力学
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A natively unfolded yeast prion monomer adopts an ensemble of collapsed and rapidly fluctuating structures.一种天然未折叠的酵母朊病毒单体采用了一组折叠且快速波动的结构。
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肿胀无序肽的接触形成动力学和端到端距离分布

Kinetics of contact formation and end-to-end distance distributions of swollen disordered peptides.

作者信息

Soranno Andrea, Longhi Renato, Bellini Tommaso, Buscaglia Marco

机构信息

Dipartimento di Chimica, Biochimica e Biotecnologie per la Medicina, Università di Milano, 20090 Segrate, Milan, Italy.

出版信息

Biophys J. 2009 Feb 18;96(4):1515-28. doi: 10.1016/j.bpj.2008.11.014.

DOI:10.1016/j.bpj.2008.11.014
PMID:19217868
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2717228/
Abstract

Unstructured polypeptide chains are subject to various degrees of swelling or compaction depending on the combination of solvent condition and amino acid sequence. Highly denatured proteins generally behave like random-coils with excluded volume repulsion, whereas in aqueous buffer more compact conformations have been observed for the low-populated unfolded state of globular proteins as well as for naturally disordered sequences. To quantitatively account for the different mechanisms inducing the swelling of polypeptides, we have examined three 14-residues peptides in aqueous buffer and in denaturant solutions, including the well characterized AGQ repeat as a reference and two variants, in which we have successively introduced charged side chains and removed the glycines. Quenching of the triplet state of tryptophan by close contact with cysteine has been used in conjunction with Förster resonance energy transfer to study the equilibrium and kinetic properties of the peptide chains. The experiments enable accessing end-to-end root mean-square distance, probability of end-to-end contact formation and intrachain diffusion coefficient. The data can be coherently interpreted on the basis of a simple chain model with backbone angles obtained from a library of coil segments of proteins and hard sphere repulsion at each Calpha position. In buffered water, we find that introducing charges in a glycine-rich sequence induces a mild chain swelling and a significant speed-up of the intrachain dynamics, whereas the removal of the glycines results in almost a two-fold increase of the chain volume and a drastic slowing down. In denaturants we observe a pronounced swelling of all the chains, with significant differences between the effect of urea and guanidinium chloride.

摘要

无规多肽链会根据溶剂条件和氨基酸序列的组合而发生不同程度的膨胀或压缩。高度变性的蛋白质通常表现得像具有排除体积排斥作用的无规卷曲,而在水性缓冲液中,对于球状蛋白质低丰度的未折叠状态以及天然无序序列,已观察到更紧密的构象。为了定量解释诱导多肽膨胀的不同机制,我们研究了三种14个残基的肽在水性缓冲液和变性剂溶液中的情况,包括特征明确的AGQ重复序列作为参考以及两个变体,我们在其中依次引入了带电侧链并去除了甘氨酸。通过与半胱氨酸紧密接触来猝灭色氨酸的三重态,并结合Förster共振能量转移来研究肽链的平衡和动力学性质。这些实验能够获取端到端的均方根距离、端到端接触形成的概率以及链内扩散系数。基于一个简单的链模型,利用从蛋白质卷曲片段库获得的主链角度以及每个α碳原子位置的硬球排斥作用,可以连贯地解释这些数据。在缓冲水中,我们发现,在富含甘氨酸的序列中引入电荷会导致轻微的链膨胀和链内动力学显著加速,而去除甘氨酸则会使链体积几乎增加两倍并导致剧烈减速。在变性剂中,我们观察到所有链都有明显的膨胀,尿素和氯化胍的作用之间存在显著差异。