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INTERACTION BETWEEN THE PARAMETERS OF HYDROSTATIC PRESSURE AND TEMPERATURE ON ASPARTASE OF ESCHERICHIA COLI

机译:大肠杆菌静水压力与静水压力和温度参数的相互作用

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摘要

Haight, Roger D. (University of Nebraska, Lincoln) and Richard Y. Morita. Interaction between the parameters of hydrostatic pressure and temperature on aspartase of Escherichia coli. J. Bacteriol. >83:112–120. 1962.—The data obtained from studies of an aspartase preparation and aspartase in cells of Escherichia coli indicate that there is an interaction between the parameters of hydrostatic pressure and temperature. Pressure was found to decrease aspartase activity at 45 C and lower in vitro and below 53 C in vivo, thereby indicating that when the enzyme-substrate complex is formed there is an increase in molecular volume which is counteracted by pressure. Above 53 C in vivo and above 45 C in vitro, temperature probably starts the unfolding process of the enzyme to expose more reactive sites, while pressure then pushes the enzyme and substrate into closer proximity with each other. Thus, pressure stimulated activity and also prevents further unfolding of the enzyme. Since the enzyme preparation retains about the same level of activity after being subjected first to 1000 atm at 56 C, the aspartase probably refolds into its original configuration or one similar to it, when subjected to 1 atm at 37 C.In all cases, the presence of the substrate was found necessary to protect aspartase from thermal inactivation or denaturation.
机译:Haight,Roger D.(内布拉斯加大学,林肯)和Richard Y. Morita。静水压力参数和温度对大肠杆菌天冬氨酸酶的相互作用。 J.细菌。 > 83: 112-120。 1962年。从对大肠杆菌细胞中天冬氨酸酶制剂和天冬氨酸酶的研究中获得的数据表明,静水压力参数和温度之间存在相互作用。发现压力在45℃降低了天冬氨酸酶活性,在体外降低了,在体内低于53℃,从而表明当形成酶-底物复合物时,分子体积的增加被压力抵消了。体内温度高于53°C,体外温度高于45°C,温度可能会启动酶的展开过程,以暴露更多的反应位点,然后压力将酶和底物推向彼此更靠近的位置。因此,压力刺激了活性并且还防止了酶的进一步展开。由于该酶制剂在56°C下首先经受1000 atm的作用后仍能保持大约相同的活性水平,因此在37°C下经受1 atm的作用后,天冬氨酸酶可能会重新折叠成其原始构型或类似的构型。发现底物的存在对于保护天冬氨酸酶免于热灭活或变性是必要的。

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