首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Membrane topology modulates beta-galactosidase activity against soluble substrates.
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Membrane topology modulates beta-galactosidase activity against soluble substrates.

机译:膜拓扑结构调节针对可溶性底物的β-半乳糖苷酶活性。

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摘要

The effect of bio-surfaces of contrasting curvature, on the kinetic parameters of ortho-nitrophenyl-beta-D-galactopiranoside hydrolysis catalyzed by E. coli beta-galactosidase, was investigated. The self-aggregating state and structure of the amphiphiles (Phosphatidylcholine, Lubrol-PX, Triton X-100, DocNa, SDS and CTAB) were inferred from their c.m.c. values and light-scattering measurements. Low curvature phosphatidylcholine or mixed phosphatidylcholine-detergent vesicles increased V(max) without affecting K(M). High curvature micellar structures containing ionic detergents modulated negatively the enzyme activity (decreased or abolished V(max) and increased K(M)). Neither micelles containing non-ionic detergents nor the amphiphiles in a monomeric form, affected enzyme activity. CTAB at a concentration bellow its c.m.c but incorporated into a bilayer, became an activator (K(M) decreased respect to the control). Non-enzymatic interfacial hydrolysis of the substrate was discarded. Enzyme-membrane interaction and membrane elasticity, were evaluated using monomolecular layers at the air-water interface. Beyond particular molecular structures, topology affected the direction of the modulatory effects exerted by these amphiphiles on beta-galactosidase activity.
机译:研究了曲率相反的生物表面对大肠杆菌β-半乳糖苷酶催化的邻硝基苯基-β-D-吡喃半乳糖苷水解动力学参数的影响。两亲的自聚集状态和结构(磷脂酰胆碱,Lubrol-PX,Triton X-100,DocNa,SDS和CTAB)从其c.m.c.值和光散射测量。低曲率磷脂酰胆碱或混合的磷脂酰胆碱洗涤小泡可增加V(max)而不会影响K(M)。含有离子型去污剂的高曲率胶束结构对酶活性产生负调节作用(V(max)降低或消除,K(M)升高)。含有非离子型去污剂的胶束和单体形式的两亲物都不会影响酶的活性。 CTAB的浓度低于其c.m.c,但掺入双层中,成为活化剂(相对于对照,K(M)降低)。丢弃底物的非酶界面水解。在空气-水界面使用单分子层评估酶-膜相互作用和膜弹性。除了特定的分子结构外,拓扑结构还影响了这些两亲物对β-半乳糖苷酶活性产生的调节作用的方向。

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