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兔肌肉甘油醛-3-磷酸脱氢酶的热失活动力学及四级结构对称性

Kinetics of thermal inactivation and quaternary structure symmetry of rabbit muscle glyceraldehyde 3-phosphate dehydrogenase.

作者信息

Malhotra O P, Tikoo K

机构信息

Department of Biochemistry, Banaras Hindu University, Varanasi.

出版信息

Indian J Biochem Biophys. 1991 Feb;28(1):16-21.

PMID:2055596
Abstract

Kinetics of thermal inactivation of apo-glyceraldehyde 3-phosphate dehydrogenase have been investigated under various conditions. At most pH values, the loss of enzyme activity takes place in two phases, a fast and a slow phase. The data correspond to the rate equation A = Afast.e-kfast.t + Aslow.e-kslow, where A is the observed residual activity (expressed as % of initial activity) at time t, Afast and Aslow are amplitudes (expressed as % of initial activity, so that Afast + Aslow = 100) and kfast and kslow the rate constants of the fast and slow phases, respectively. At pH 9 or below, Afast = Aslow = 50%. As pH is increased above 9, Afast increases gradually till at pH 10 or above when it accounts for the entire initial activity (single exponential decay). The rate constants of the two phases are strongly affected by the nature of the buffer, temperature and pH, but the amplitudes depend on pH alone. It has been suggested that the tetrameric enzyme exists in two conformations of different molecular symmetry, namely C2 (two pairs of sites of unequal stability, predominating at pH 9 or below) and D2 symmetry (four equivalent sites, predominating at pH 10 or above). The C2 in equilibrium D2 transformation is found to be highly cooperative with midpoint at pH 9.6.

摘要

已在各种条件下研究了脱辅基甘油醛-3-磷酸脱氢酶的热失活动力学。在大多数pH值下,酶活性的丧失分两个阶段进行,即快速阶段和缓慢阶段。这些数据符合速率方程A = Afast.e - kfast.t + Aslow.e - kslow,其中A是在时间t时观察到的残余活性(以初始活性的百分比表示),Afast和Aslow是幅度(以初始活性的百分比表示,因此Afast + Aslow = 100),kfast和kslow分别是快速阶段和缓慢阶段的速率常数。在pH 9或更低时,Afast = Aslow = 50%。当pH值增加到9以上时,Afast逐渐增加,直到在pH 10或更高时它占整个初始活性(单指数衰减)。两个阶段的速率常数受缓冲液性质、温度和pH的强烈影响,但幅度仅取决于pH。有人提出,四聚体酶以两种具有不同分子对称性的构象存在,即C2(两对稳定性不等的位点,在pH 9或更低时占主导)和D2对称性(四个等效位点,在pH 10或更高时占主导)。发现C2到D2的平衡转化在pH 9.6时具有高度协同性,中点在pH 9.6。

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