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Sequential Events in the Irreversible Thermal Denaturation of Human Brain-Type Creatine Kinase by Spectroscopic Methods

机译:光谱方法在人脑型肌酸激酶不可逆热变性中的顺序事件

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The non-cooperative or sequential events which occur during protein thermal denaturation are closely correlated with protein folding, stability, and physiological functions. In this research, the sequential events of human brain-type creatine kinase (hBBCK) thermal denaturation were studied by differential scanning calorimetry (DSC), CD, and intrinsic fluorescence spectroscopy. DSC experiments revealed that the thermal denaturation of hBBCK was calorimetrically irreversible. The existence of several endothermic peaks suggested that the denaturation involved stepwise conformational changes, which were further verified by the discrepancy in the transition curves obtained from various spectroscopic probes. During heating, the disruption of the active site structure occurred prior to the secondary and tertiary structural changes. The thermal unfolding and aggregation of hBBCK was found to occur through sequential events. This is quite different from that of muscle-type CK (MMCK). The results herein suggest that BBCK and MMCK undergo quite dissimilar thermal unfolding pathways, although they are highly conserved in the primary and tertiary structures. A minor difference in structure might endow the isoenzymes dissimilar local stabilities in structure, which further contribute to isoenzyme-specific thermal stabilities.
机译:蛋白质热变性过程中发生的非合作或顺序事件与蛋白质折叠,稳定性和生理功能密切相关。在这项研究中,通过差示扫描量热法(DSC),CD和固有荧光光谱法研究了人脑型肌酸激酶(hBBCK)热变性的顺序事件。 DSC实验表明,hBBCK的热变性是量热不可逆的。几个吸热峰的存在表明变性涉及逐步的构象变化,这一点由从各种光谱探针获得的跃迁曲线的差异进一步证实。在加热期间,活性位点结构的破坏发生在二级和三级结构变化之前。发现hBBCK的热解折叠和聚集是通过顺序事件发生的。这与肌肉型CK(MMCK)完全不同。本文的结果表明,尽管BBCK和MMCK在一级和三级结构中高度保守,但它们经历了完全不同的热解折叠途径。结构上的微小差异可能会使同工酶在结构上具有不同的局部稳定性,这进一步有助于同工酶特异性的热稳定性。

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