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NMR Evidence for Forming Highly Populated Helical Conformations in the Partially Folded hNck2 SH3 Domain

机译:在部分折叠的hNck2 SH3域中形成高填充螺旋构象的NMR证据。

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摘要

Recent studies of several proteins implied that the folding of β-proteins may follow a nonhierarchical mechanism in which two major transitions are essential, i.e., the collapse of a random coil to form a nonnative helical intermediate, followed by a transformation into the native β-structure. We report that the first hNck2 SH3 domain, assuming an all-β barrel in the native form, can be reversibly transformed into a stable and nonnative helical state by acid-unfolding. We also conducted extensive NMR and mutagenesis studies that led to two striking findings: 1), NMR analysis reveals that in the helical state formed at pH 2.0, the first and last β-strands in the native form become unstructured, whereas the rest is surprisingly converted into two highly populated helices with a significantly limited backbone motion; and 2), a conserved four-residue sequence is identified on the second β-strand, a mutation of which suddenly renders the SH3 domain into a helical state even at pH 6.5, with NMR conformational and dynamic properties highly similar to those of the wild-type at pH 2.0. This observation implies that the region might contribute key interactions to disrupt the helical state, and to facilitate a further transformation into the native SH3 fold in the second transition.
机译:对几种蛋白质的最新研究表明,β蛋白质的折叠可能遵循非分层机制,其中两个主要过渡是必不可少的,即,随机卷曲塌陷以形成非天然螺旋中间体,然后转化为天然β-结构体。我们报告说,第一个hNck2 SH3结构域,假设是天然形式的全β桶,可以通过酸展开可逆地转化为稳定的和非天然的螺旋状态。我们还进行了广泛的NMR和诱变研究,得出两个惊人的发现:1)NMR分析表明,在pH 2.0形成的螺旋状态下,天然形式的第一个和最后一个β链变得无结构,而其余的令人惊讶转换为两个高密度螺旋,主链运动明显受限;和2),在第二个β链上鉴定了一个保守的四个残基序列,其突变突然使SH3结构域即使在pH 6.5时也呈螺旋状态,其NMR构象和动力学特性与野生型极为相似。在pH 2.0下为-型。该观察结果暗示该区域可能参与关键相互作用以破坏螺旋状态,并有助于在第二过渡中进一步转化为天然SH3折叠。

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