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Catalytic activity of thermolysin under extremes of pressure and temperature: modulation by metal ions

机译:极端温度和压力下的嗜热菌蛋白酶的催化活性:金属离子的调节

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摘要

The catalytic activity of thermolysin (TL), Zn-dependent neutral protease from Bacillus thermoproteolyticus, has been studied over a wide interval of pressures (1 bar to 4 kbar) and temperatures (20 ℃ to 80 ℃) by monitoring hydrolysis of a low-molecular-mass substrate, 3-(2-furylacryloyl)-glycyl-L-leucine amide. This reaction shows a very large negative value for the activation volume and, because of that, simultaneous increase in temperature and pressure leads to a significant (up to 40-fold) acceleration of the reaction. At pressures higher than 2-2.5 kbar, the reaction rate starts to decrease due to disactivation of TL. This disactivation is explained in part by pressure-promoted dissociation of zinc ion from the active site and can be inhibited by adding exogenous zinc. Thus, this thermostable protease does not specifically show a higher stability at high pressure in comparison with small mesophilic proteases.
机译:通过监测低水解温度下的水解,研究了在宽压力(1 bar至4 kbar)和温度(20℃至80℃)区间内对热解蛋白酶芽孢杆菌(Bacillus thermoproteolyticus)锌依赖性中性蛋白酶嗜热菌蛋白酶(TL)的催化活性。分子质量底物3-(2-呋喃基丙烯酰基)-甘氨酰-L-亮氨酸酰胺。该反应对于活化体积显示出非常大的负值,因此,温度和压力的同时升高导致反应的显着加速(最多40倍)。在高于2-2.5 kbar的压力下,由于TL失活,反应速率开始降低。这种失活部分地由压力促进的锌离子从活性位点解离来解释,并且可以通过添加外源锌来抑制。因此,与小的嗜温蛋白酶相比,该热稳定蛋白酶在高压下没有特别显示出更高的稳定性。

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