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Pressure-enhanced activity and stability of a hyperthermophilic protease from a deep-sea methanogen.

机译:来自深海产甲烷菌的超嗜热蛋白酶的压力增强活性和稳定性。

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摘要

We describe the properties of a hyperthermophilic, barophilic protease from Methanococcus jannaschii, an extremely thermophilic deep-sea methanogen. This enzyme is the first protease to be isolated from an organism adapted to a high-pressure-high-temperature environment. The partially purified enzyme has a molecular mass of 29 kDa and a narrow substrate specificity with strong preference for leucine at the P1 site of polypeptide substrates. Enzyme activity increased up to 116(deg)C and was measured up to 130(deg)C, one of the highest temperatures reported for the function of any enzyme. In addition, enzyme activity and thermostability increased with pressure: raising the pressure to 500 atm increased the reaction rate at 125(deg)C 3.4-fold and the thermostability 2.7-fold. Spin labeling of the active-site serine revealed that the active-site geometry of the M. jannaschii protease is not grossly different from that of several mesophilic proteases; however, the active-site structure may be relatively rigid at moderate temperatures. The barophilic and thermophilic behavior of the enzyme is consistent with the barophilic growth of M. jannaschii observed previously (J. F. Miller et al., Appl. Environ. Microbiol. 54:3039-3042, 1988).
机译:我们描述了一种来自嗜热甲烷球菌(一种极端嗜热的深海产甲烷菌)的超嗜热,嗜碱性蛋白酶的特性。该酶是从适应高压高温环境的生物中分离出的第一种蛋白酶。部分纯化的酶的分子量为29 kDa,底物特异性较窄,多肽底物P1位点的亮氨酸优先偏高。酶活性增加到116℃,并测量到130℃,这是任何酶的功能所报告的最高温度之一。另外,酶活性和热稳定性随压力而增加:将压力升高至500atm,在125℃下的反应速率提高了3.4倍,而热稳定性提高了2.7倍。活性位点丝氨酸的自旋标记表明,詹氏甲烷球菌蛋白酶的活性位点几何形状与几种嗜温蛋白酶的活性位点几何形状没有太大不同。但是,活动站点结构在中等温度下可能相对较硬。该酶的嗜温和嗜热行为与先前观察到的詹氏甲烷八叠球菌的嗜温生长是一致的(J.F.Miller等人,Appl.Environ.Microbiol.54:3039-3042,1988)。

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