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Evidence for close side-chain packing in an early protein folding intermediate previously assumed to be a molten globule

机译:在先前被认为是熔融小球的早期蛋白质折叠中间体中紧密侧链堆积的证据

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摘要

The molten globule, a conformational ensemble with significant secondary structure but only loosely packed tertiary structure, has been suggested to be a ubiquitous intermediate in protein folding. However, it is difficult to assess the tertiary packing of transiently populated species to evaluate this hypothesis. Escherichia coli RNase H is known to populate an intermediate before the rate-limiting barrier to folding that has long been thought to be a molten globule. We investigated this hypothesis by making mimics of the intermediate that are the ground-state conformation at equilibrium, using two approaches: a truncation to generate a fragment mimic of the intermediate, and selective destabilization of the native state using point mutations. Spectroscopic characterization and the response of the mimics to further mutation are consistent with studies on the transient kinetic intermediate, indicating that they model the early intermediate. Both mimics fold cooperatively and exhibit NMR spectra indicative of a closely packed conformation, in contrast to the hypothesis of molten tertiary packing. This result is important for understanding the nature of the subsequent rate-limiting barrier to folding and has implications for the assumption that many other proteins populate molten globule folding intermediates.
机译:熔融小球是具有明显的二级结构但只有松散堆积的三级结构的构象集合,已被认为是蛋白质折叠中普遍存在的中间体。但是,很难评估瞬态种群的第三纪包装来评估这一假设。已知大肠埃希氏菌RNase H在折叠的限速壁垒之前就已经存在一个中间体,长期以来一直认为它是一个熔融的小球。我们使用两种方法通过模拟处于平衡状态的基态构象中间体来研究该假设:截短以生成中间体的片段模拟物,以及使用点突变选择性地破坏天然状态。光谱表征和模拟物对进一步突变的响应与瞬态动力学中间体的研究一致,表明它们模拟了早期中间体。与假想的第三层堆积的假设相反,这两个模拟物共同折叠并显示出表明紧密堆积构象的NMR光谱。该结果对于理解随后的折叠速率限制障碍的性质很重要,并且对假设许多其他蛋白质构成熔融小球折叠中间体的假设也具有重要意义。

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