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嗜热紫链霉菌几丁质酶40的平衡热诱导变性

Equilibrium heat-induced denaturation of chitinase 40 from Streptomyces thermoviolaceus.

作者信息

Pyrpassopoulos Serapion, Vlassi Metaxia, Tsortos Achilleas, Papanikolau Yannis, Petratos Kyriacos, Vorgias Constantinos E, Nounesis George

机构信息

National Centre for Scientific Research Demokritos, 153 10 Aghia Paraskevi, Greece.

出版信息

Proteins. 2006 Aug 1;64(2):513-23. doi: 10.1002/prot.21003.

Abstract

High-precision differential scanning calorimetry (DSC) and circular dichroism (CD) have been employed to study the thermal unfolding of chitinase 40 (Chi40) from Streptomyces thermoviolaceus. Chi40 belongs to family 18 of glycosyl hydrolase superfamily bearing a catalytic domain with a "TIM barrel"-like fold, which exhibits deviations from the (beta/alpha)8 fold. The thermal unfolding is reversible at pH = 8.0 and 9.0. The denatured state is characterized by extensive structural changes with respect to the native. The process is characterized by slow relaxation kinetics. Even slower refolding rates are recorded upon cooling. It is shown that the denaturation calorimetric data obtained at slow heating rate (0.17 K/min) are in excellent agreement with equilibrium data obtained by extrapolation of the experimental results to zero scanning rate. Analysis of the DSC results reveals that the experimental data can be successfully fitted using either a non-two-state sequential model involving one equilibrium intermediate, or an independent transitions model involving the unfolding of two Chi40 energetic domains to intermediate states. The stability of the native state with respect to the final denatured state is estimated, deltaG = 24.0 kcal/mol at 25 degrees C. The thermal results are in agreement with previous findings from chemical denaturation studies of a wide variety of (beta/alpha)8 barrel proteins, that their unfolding is a non-two-state process, always involving at least one unfolding intermediate.

摘要

已采用高精度差示扫描量热法(DSC)和圆二色性(CD)来研究嗜热紫链霉菌几丁质酶40(Chi40)的热解折叠过程。Chi40属于糖基水解酶超家族的第18家族,具有一个带有“TIM桶”样折叠的催化结构域,该结构域与(β/α)8折叠存在偏差。在pH = 8.0和9.0时,热解折叠是可逆的。变性状态的特征是相对于天然状态有广泛的结构变化。该过程的特征是弛豫动力学缓慢。冷却时记录到的重折叠速率甚至更慢。结果表明,在缓慢加热速率(0.17 K/min)下获得的变性量热数据与通过将实验结果外推至零扫描速率而获得的平衡数据非常吻合。对DSC结果的分析表明,实验数据可以使用涉及一个平衡中间体的非二态顺序模型或涉及两个Chi40能量结构域解折叠为中间状态的独立转变模型成功拟合。估计了天然状态相对于最终变性状态的稳定性,在25℃时ΔG = 24.0 kcal/mol。热学结果与先前对多种(β/α)8桶状蛋白质进行化学变性研究的结果一致,即它们的解折叠是一个非二态过程,总是涉及至少一个解折叠中间体。

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