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pH jump studies of the folding of the multidomain ribosomal protein L9: the structural organization of the N-terminal domain does not affect the anomalously slow folding of the C-terminal domain.

机译:多域核糖体蛋白L9折叠的pH跃变研究:N末端域的结构组织不影响C末端域异常缓慢的折叠。

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The folding kinetics of the multidomain ribosomal protein L9 were studied using pH jump stopped-flow fluorescence and circular dichroism (CD) in conjunction with guanidine hydrochloride (GdnHCl) jump stopped-flow CD experiments. Equilibrium CD and 1D (1)H NMR measurements demonstrated that the C-terminal domain unfolds below pH 4 while the N-terminal domain remains fully folded. Thus, the N-terminal domain remains folded during the pH jump experiments. The folding rate constant of the C-terminal domain was determined to be 3.5 s(-1) by pH jump experiments conducted in the absence of denaturant using stopped-flow CD and fluorescence. CD-detected GdnHCl jump measurements showed that the N- and C-terminal domains fold independently each by an apparent two-state mechanism. The folding rate constant for the N-terminal domain and the C-terminal domain in the absence of denaturant were calculated to be 760 and 4. 7 s(-1), respectively. The good agreement between the pH jump and the denaturant concentration jump experiments shows that the folding rate of the C-terminal domain is the same whether or not the N-terminal domain is folded. This result suggests that the slow folding of the C-terminal domain is not a consequence of unfavorable interactions with the rest of the protein chain during refolding. This is an interesting result since contact order analysis predicts that the folding rate of the C-terminal domain should be noticeably faster. The folding rate of the isolated N-terminal domain was also measured by stopped-flow CD and was found to be the same as the rate for the domain in the intact protein.
机译:结合pH跳跃停流荧光和圆二色性(CD)结合盐酸胍(GdnHCl)跳跃停流CD实验研究了多域核糖体蛋白L9的折叠动力学。 CD和1D(1)H NMR平衡测量表明,C末端结构域在pH 4以下展开,而N末端结构域保持完全折叠。因此,在pH跳跃实验期间,N-末端结构域保持折叠。通过在不存在变性剂的情况下使用停流CD和荧光进行的pH跳跃实验,将C端结构域的折叠速率常数确定为3.5 s(-1)。 CD检测的GdnHCl跃迁测量表明,N和C端结构域各自通过明显的二态机制独立折叠。在不存在变性剂的情况下,N末端结构域和C末端结构域的折叠速率常数分别计算为760和4. 7 s(-1)。 pH跃迁和变性剂浓度跃迁实验之间的良好一致性表明,无论N端结构域是否折叠,C端结构域的折叠速率均相同。该结果表明,C末端结构域的缓慢折叠不是重新折叠期间与其余蛋白质链的不利相互作用的结果。这是一个有趣的结果,因为接触顺序分析预测C末端结构域的折叠速率应明显更快。分离的N-末端结构域的折叠速率也通过停止流CD测量,发现与完整蛋白中结构域的折叠速率相同。

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