首页> 外文OA文献 >Kinetic model for surface-active enzymes based on the Langmuir adsorption isotherm: phospholipase C (Bacillus cereus) activity toward dimyristoyl phosphatidylcholine/detergent micelles.
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Kinetic model for surface-active enzymes based on the Langmuir adsorption isotherm: phospholipase C (Bacillus cereus) activity toward dimyristoyl phosphatidylcholine/detergent micelles.

机译:基于Langmuir吸附等温线的表面活性酶的动力学模型:磷脂酶C(蜡状芽孢杆菌)对二肉豆蔻酰基磷脂酰胆碱/洗涤剂微团的活性。

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摘要

A simple kinetic model for the enzymatic activity of surface-active proteins against mixed micelles has been developed. This model uses the Langmuir adsorption isotherm, the classic equation for the binding of gas molecules to metal surfaces, to characterize enzyme adsorption to micelles. The number of available enzyme binding sites is equated with the number of substrate and inhibitor molecules attached to micelles; enzyme molecules are attracted to the micelle due to the affinity of the enzyme active site for the molecules in the micelle. Phospholipase C (Bacillus cereus) kinetics in a wide variety of dimyristoyl phosphatidylcholine/detergent micelles are readily explained by this model and the assumption of competitive binding of the detergent at the enzyme active site. Binding of phospholipase C to pure detergent micelles is demonstrated by gel filtration chromatography. The experimentally determined enzyme-detergent micelle binding constants are used directly in the rate equation. The Langmuir adsorption model predicts a variety of the characteristics observed for phospholipase kinetics, such as differential inhibition by various charged, uncharged, and zwitterionic detergents and surface-dilution inhibition. The essential idea of this model, that proteins can be attracted and bound to bilayers or micelles by possessing a binding site for the molecules composing the surface, may have wider application in the study of water-soluble (extrinsic) protein-membrane interactions.
机译:已经建立了表面活性蛋白对混合胶束的酶促活性的简单动力学模型。该模型使用Langmuir吸附等温线,这是气体分子与金属表面结合的经典方程式,用于表征酶对胶束的吸附。可用的酶结合位点的数量等于与胶束连接的底物和抑制剂分子的数量。由于酶活性位点对胶束中分子的亲和力,酶分子被吸引到胶束中。通过该模型以及洗涤剂在酶活性位点竞争性结合的假设,很容易解释了多种二肉豆蔻酰基磷脂酰胆碱/洗涤剂微团中的磷脂酶C(蜡状芽孢杆菌)动力学。通过凝胶过滤色谱法证明磷脂酶C与纯去污剂胶束的结合。实验确定的酶-洗涤剂胶束结合常数直接用于速率方程。 Langmuir吸附模型预测了磷脂酶动力学的各种特征,例如各种带电,不带电和两性离子去污剂的差异抑制和表面稀释抑制。该模型的基本思想是,通过拥有构成表面分子的结合位点,蛋白质可以被吸引并结合到双层或胶束上,在水溶性(外在)蛋白质-膜相互作用的研究中可能具有更广泛的应用。

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