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Conformational stability of ribonuclease T1 determined by hydrogen-deuterium exchange.

机译:通过氢-氘交换确定核糖核酸酶T1的构象稳定性。

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摘要

The hydrogen-deuterium exchange kinetics of 37 backbone amide residues in RNase T1 have been monitored at 25, 40, 45, and 50 degrees C at pD 5.6 and at 40 and 45 degrees C at pD 6.6. The hydrogen exchange rate constants of the hydrogen-bonded residues varied over eight orders of magnitude at 25 degrees C with 13 residues showing exchange rates consistent with exchange occurring as a result of global unfolding. These residues are located in strands 2-4 of the central beta-pleated sheet. The residues located in the alpha-helix and the remaining strands of the beta-sheet exhibited exchange behaviors consistent with exchange occurring due to local structural fluctuations. For several residues at 25 degrees C, the global free energy change calculated from the hydrogen exchange data was over 2 kcal/mol greater than the free energy of unfolding determined from urea denaturation experiments. The number of residues showing this unexpected behavior was found to increase with temperature. This apparent inconsistency can be explained quantitatively if the cis-trans isomerization of the two cis prolines, Pro-39 and Pro-55, is taken into account. The cis-trans isomerization equilibrium calculated from kinetic data indicates the free energy of the unfolded state will be 2.6 kcal/mol higher at 25 degrees C when the two prolines are cis rather than trans (Mayr LM, Odefey CO, Schutkowski M, Schmid FX. 1996. Kinetic analysis of the unfolding and refolding of ribonuclease T1 by a stopped-flow double-mixing technique. Biochemistry 35: 5550-5561). The hydrogen exchange results are consistent with the most slowly exchanging hydrogens exchanging from a globally higher free energy unfolded state in which Pro-55 and Pro-39 are still predominantly in the cis conformation. When the conformational stabilities determined by hydrogen exchange are corrected for the proline isomerization equilibrium, the results are in excellent agreement with those from an analysis of urea denaturation curves.
机译:已在25、40、45和50摄氏度(pD 5.6)和40和45摄氏度(pD 6.6)监测了RNase T1中37个骨架酰胺残基的氢-氘交换动力学。氢键残基的氢交换常数在25℃下在八个数量级上变化,其中13个残基显示出与由于整体展开而发生的交换一致的交换率。这些残基位于中央β-折叠薄片的链2-4中。位于β-折叠的α-螺旋和其余链中的残基表现出与由于局部结构波动而发生的交换一致的交换行为。对于在25摄氏度时的几个残基,根据氢交换数据计算得出的总自由能变化比通过尿素变性实验确定的展开自由能大2 kcal / mol以上。发现显示出这种出乎意料的行为的残基数量随温度增加。如果考虑到两个顺式脯氨酸Pro-39和Pro-55的顺式-反式异构化,则可以定量解释这种明显的不一致。由动力学数据计算得出的顺反异构化平衡表明,当两个脯氨酸为顺而不是反式时,未折叠状态的自由能在25°C时将高2.6 kcal / mol(Mayr LM,Odefey CO,Schutkowski M,Schmid FX 1996.通过停止流双重混合技术对核糖核酸酶T1的解折叠和重新折叠的动力学分析(生物化学35:5550-5561)。氢交换的结果与从全局更高的自由能未折叠状态交换的最缓慢交换的氢一致,在该状态下,Pro-55和Pro-39仍主要处于顺式构象。当通过氢交换确定的构象稳定性针对脯氨酸异构化平衡进行校正时,其结果与尿素变性曲线的分析结果非常吻合。

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