首页> 外文期刊>Proteins: Structure, Function, and Genetics >Residue-wise conformational stability of DLC8 dimer from native-state hydrogen exchange.
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Residue-wise conformational stability of DLC8 dimer from native-state hydrogen exchange.

机译:来自天然氢交换的DLC8二聚体的残基构象稳定性。

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Dynein light chain (DLC8) is the smallest subunit of the dynein motor complex, which is known to act as a cargo adaptor in intracellular trafficking. The protein exists as a pure dimer at physiological pH and a completely folded monomer below pH 4. Here, we have determined the energy landscape of the dimeric protein using a combination of optical techniques and native-state hydrogen exchange of amide groups, the former giving the global features and the latter yielding the residue level details. The data indicated the presence of intermediates along the equilibrium unfolding transition. The hydrogen exchange data suggested that the molecule has differential stability in its various segments. We deduce from the free energy data that the antiparallel beta-sheets (beta4 and beta5) that form the hydrophobic core of the protein and the alpha2 helix, all of which are highly protected with regard to hydrogen exchange, contribute significantly to the initial step of the protein folding mechanism. Denaturant-dependent hydrogen exchange indicated further that some amides exchange via local fluctuations, whereas there are others which exchange via global unfolding events. Implications of these to cargo adaptability of the dimer are discussed.
机译:动力蛋白轻链(DLC8)是动力蛋白复合物的最小亚基,已知它在细胞内运输中起货物衔接子的作用。该蛋白质在生理pH下为纯二聚体,在pH 4以下为完全折叠的单体。在这里,我们结合光学技术和酰胺基团的自然态氢交换,确定了二聚蛋白的能级。全局特征和后者产生的残留量详细信息。数据表明沿着平衡展开过渡存在中间体。氢交换数据表明该分子在其各个片段中具有不同的稳定性。我们从自由能数据推论出,形成蛋白质疏水核心的反平行β-折叠(beta4和beta5)和α2螺旋在氢交换方面都受到高度保护,它们对氢的初始步骤起了重要作用。蛋白质折叠机制。依赖于变性剂的氢交换进一步表明,某些酰胺通过局部波动进行交换,而另一些酰胺则通过全局展开事件进行交换。讨论了这些对二聚体的货物适应性的影响。

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