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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Highly Heterogeneous Nature of the Native and Unfolded States of the B Domain of Protein A Revealed by Two-Dimensional Fluorescence Lifetime Correlation Spectroscopy
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Highly Heterogeneous Nature of the Native and Unfolded States of the B Domain of Protein A Revealed by Two-Dimensional Fluorescence Lifetime Correlation Spectroscopy

机译:由二维荧光寿命相关光谱透露的蛋白质A的B域的天然和展开状态的高度异质性质

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Elucidating the protein folding mechanism is crucial to understand how proteins acquire their unique structures to realize various biological functions. With this aim, the folding/unfolding of small globular proteins has been extensively studied. Interestingly, recent studies have revealed that even such small prote(i)ns represent considerably complex processes. In this study, we examined the folding/unfolding process of a small a-helical protein, the B domain of protein A (BdpA), at equilibrium using two-dimensional fluorescence lifetime correlation spectroscopy with 10 mu s time resolution. The results showed that although the BdpA is a two-state folder, both the native and unfolded states are highly heterogeneous and the conformational conversion within each ensemble occurs within 10 mu s. Furthermore, it was shown that the average structures of both ensembles gradually change and become more elongated as the denaturant concentration increases. The analysis on two mutants suggested that fraying of the N-terminal helix is the origin of the inhomogeneity of the native state. Because the direct observation of the ensemble nature of the native state at the single-molecule level has not been reported, the data obtained in this study give new insights into complex conformational properties of small proteins.
机译:阐明蛋白质折叠机制对于了解蛋白质如何获得独特的结构来实现各种生物学功能至关重要。通过这种目标,广泛研究了小球状蛋白的折叠/展开。有趣的是,最近的研究表明,即使如此小的抗蛋白(i)ns则代表着大量复杂的过程。在这项研究中,我们检查了使用具有10μs的时间分辨率的二维荧光寿命相关光谱,在平衡下进行小A螺旋蛋白,B域(BDPA)的B域的折叠/展开过程。结果表明,虽然BDPA是两个状态文件夹,但是天然和展开状态都是高度异构的,并且每个集合内的构象转化在10亩内发生。此外,结果表明,随着变性剂浓度的增加,两种整体的平均结构逐渐变化并变得更加伸长。对两个突变体的分析表明,N-末端螺旋的磨损是天然状态的不均匀性的起源。由于尚未报告在单分子水平下直接观察本地状态的本地状态,因此本研究中获得的数据具有新的洞察力对小蛋白质的复杂构象性能。

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