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首页> 外文期刊>Journal of Molecular Biology >The regions of the sequence most exposed to the solvent within the amyloidogenic state of a protein initiate the aggregation process.
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The regions of the sequence most exposed to the solvent within the amyloidogenic state of a protein initiate the aggregation process.

机译:蛋白质在淀粉样蛋白生成状态下最暴露于溶剂的序列区域会引发聚集过程。

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Formation of misfolded aggregates is an essential part of what proteins can do. The process of protein aggregation is central to many human diseases and any aggregating event needs to be prevented within a cell and in protein design. In order to aggregate, a protein needs to unfold its native state, at least partially. The conformational state that is prone to aggregate is difficult to study, due to its aggregating potential and heterogeneous nature. Here, we use a systematic approach of limited proteolysis, in combination with electrospray ionisation mass spectrometry, to investigate the regions that are most flexible and solvent-exposed within the native, ligand-bound and amyloidogenic states of muscle acylphosphatase (AcP), a protein previously shown to form amyloid fibrils in the presence of trifluoroethanol. Seven proteases with different degrees of specificity have been used for this purpose. Following exposure to the aggregating conditions, a number of sites along the sequence of AcP become susceptible to proteolytic digestion. The pattern of proteolytic cleavages obtained under these conditions is considerably different from that of the native and ligand-bound conformations and includes a portion within the N-terminal tail of the protein (residues 6-7), the region of the sequence 18-23 and the position 94 near the C terminus. There is a significant overlap between the regions of the sequence found to be solvent-exposed from the present study and those previously identified to be critical in the rate-determining steps of aggregation from protein engineering approaches. This indicates that a considerable degree of solvent exposure is a feature of the portions of a protein that initiate the process of aggregation.
机译:折叠错误的聚集体的形成是蛋白质可以做的重要部分。蛋白质聚集的过程是许多人类疾病的核心,因此任何聚集事件都需要在细胞内和蛋白质设计中加以预防。为了聚集,蛋白质需要至少部分地展现其天然状态。易于聚集的构象状态由于其聚集潜力和异质性而难以研究。在这里,我们使用有限的蛋白水解的系统化方法,结合电喷雾电离质谱法,研究肌肉酰基磷酸酶(AcP)(一种蛋白质)的天然,配体结合和淀粉样生成状态中最灵活和溶剂暴露的区域先前显示在三氟乙醇存在下会形成淀粉样原纤维。为此目的使用了七种具有不同程度的特异性的蛋白酶。在暴露于聚集条件后,沿AcP序列的许多位点变得易于蛋白水解消化。在这些条件下获得的蛋白水解切割模式与天然构象和配体结合构象的模式有很大不同,并且包括蛋白质N末端尾部的一部分(残基6-7),即序列18-23的区域。 C端附近的位置94。在本研究中发现被溶剂暴露的序列区域与先前确定为对蛋白质工程方法进行聚集的速率确定步骤至关重要的区域之间存在明显的重叠。这表明相当程度的溶剂暴露是启动聚集过程的蛋白质部分的特征。

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