Gelb M H, Jain M K, Hanel A M, Berg O G
Department of Chemistry, University of Washington, Seattle 98195, USA.
Annu Rev Biochem. 1995;64:653-88. doi: 10.1146/annurev.bi.64.070195.003253.
Interfacial enzymes operate at an organized interface such as lipid aggregates in contact with the aqueous phase. The enzyme phospholipase A2 is a well studied interfacial enzyme, and a discussion of its behavior at interfaces is the topic of this review. Knowledge gained from studies of phospholipases A2 can be applied toward the quantitative analysis of other interfacial enzymes. The kinetic analysis of these enzymes is greatly simplified if one establishes certain experimental conditions that limit the exchange of enzyme and substrate between different substrate aggregates. With such constraints, the kinetics can be analyzed in terms of classical Michaelis-Menten theory adopted for the action of enzymes at interfaces. It is also possible to describe other enzyme properties such as inhibition and substrate preferences in a meaningful way using formalism that is well known in solution-phase enzymology.
界面酶在有组织的界面上发挥作用,例如与水相接触的脂质聚集体。磷脂酶A2是一种研究充分的界面酶,本文将对其在界面处的行为进行讨论。从磷脂酶A2的研究中获得的知识可应用于其他界面酶的定量分析。如果建立某些实验条件来限制酶和底物在不同底物聚集体之间的交换,这些酶的动力学分析将大大简化。在这种限制条件下,可以根据经典的米氏理论对界面酶的作用进行动力学分析。利用溶液相酶学中熟知的形式主义,也能够以有意义的方式描述其他酶的特性,如抑制作用和底物偏好。