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Kinetics of lipase deactivation in AOT/isooctane reversed micelles

机译:AOT /异辛烷反胶束中脂肪酶失活的动力学

摘要

The stability of lipase in AOT/isooctane reversed micellar solution was investigated. It was found that the lipase deactivated to a stable state that was not completely inactivated. The lipase residual activity after achieving the stable state in AOT/isooctane reversed micelles at 30 degreesC, pH 7.0, W-0 = 8.0 was found to be 0.15, and the first-order deactivation rate coefficient of lipase at the same conditions was regressed to be 0.75 h(-1). The stability of lipase was increased while oleic acid was added. Assuming the protection of oleic acid to lipase stability is due to the lipase-oleic acid complex does not decay, the kinetic model of lipase deactivation in AOT/isooctane reversed micellar solution including the influence of oleic acid was established. It was shown with the model equation that the increase in stability of the enzyme by oleic acid could be quantitatively estimated by the dissociation constant of lipase-oleic acid complex which was d
机译:研究了脂肪酶在AOT /异辛烷反胶束溶液中的稳定性。发现脂肪酶失活至未完全失活的稳定状态。发现在30°C,pH 7.0,W-0 = 8.0的AOT /异辛烷反胶束中达到稳定状态后,脂肪酶的残留活性为0.15,并且在相同条件下脂肪酶的一级失活速率系数回归到是0.75 h(-1)。当添加油酸时,脂肪酶的稳定性增加。假设油酸对脂肪酶稳定性的保护是由于脂肪酶-油酸复合物不衰减所致,建立了包括油酸影响的AOT /异辛烷反胶束溶液中脂肪酶失活的动力学模型。由模型方程表明,可以通过脂肪酶-油酸复合物的解离常数d来定量估计油酸对酶的稳定性增加。

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