首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >WW: An isolated three-stranded antiparallel beta-sheet domain that unfolds and refolds reversibly; evidence for a structured hydrophobic cluster in urea and GdnHCl and a disordered thermal unfolded state.
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WW: An isolated three-stranded antiparallel beta-sheet domain that unfolds and refolds reversibly; evidence for a structured hydrophobic cluster in urea and GdnHCl and a disordered thermal unfolded state.

机译:WW:分离的三链反平行β-折叠结构域可逆地展开和折叠。尿素和GdnHCl中的结构化疏水簇以及无序的热展开状态的证据。

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摘要

The objective of this study was to evaluate the suitability of the WW domain as a desirable model system to understand the folding and stability of an isolated three-stranded antiparallel beta-sheet structure. The WW domain was subjected to thermal and chaotropic denaturation/reconstitution utilizing a variety of biophysical methods. This three-stranded sheet folds reversibly and cooperatively utilizing both urea and GdnHCl as denaturants; however, the denatured state retains structure in the form of a hydrophobic cluster involving at least one aromatic side chain. In contrast to chaotropic denaturation, thermal denaturation appears to be more complete and may be a two state process. The suitability of the WW domain for future studies aimed at understanding the kinetics and thermodynamics of antiparallel beta-sheet folding clearly emerges from this initial study. The most exciting and significant result in this manuscript is the finding that the chaotropic denatured state of WW has a hydrophobic cluster as discerned by near-UV CD evidence. The role that the denatured state plays in the folding and stability of a three-stranded beta-sheets, and its capacity for preventing aggregation may be particularly important and is the subject of ongoing studies.
机译:这项研究的目的是评估WW域作为一种理想的模型系统的适用性,以了解孤立的三链反平行β-折叠结构的折叠和稳定性。利用各种生物物理方法对WW域进行热变性和离液变性/重构。该三链片材利用尿素和GdnHCl作为变性剂可逆地协同折叠。然而,变性状态保留了包含至少一个芳族侧链的疏水簇形式的结构。与离液变质相反,热变质似乎更完整,可能是两态过程。 WW域在未来研究中的适用性旨在了解反平行β-折叠折叠的动力学和热力学,这一初步研究清楚地表明了这一点。该手稿中最令人兴奋和最有意义的结果是发现WW的离液变性状态具有疏水簇,这是由近紫外CD证据所识别的。变性状态在三链β-折叠的折叠和稳定性中的作用,以及其防止聚集的能力可能特别重要,并且是正在进行的研究的主题。

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