胰脂肪酶和胶原酶:一个非均相生物催化的例子。

M Sémériva, P Desnuelle
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引用次数: 0

摘要

胰脂肪酶催化的水解反应是多相催化的一个很好的例子。这种酶的特殊性在于它对乳化底物的优先作用。催化的第一步是酶在油水界面上的可逆吸附。事实上,这种吸附复合物的形成是酶充分发挥其活性的必要步骤。为了解释观察到的界面活化现象,人们提出了两个主要但不一定是唯一的假设:要么是界面赋予底物新的性质,从而允许其随后的水解,要么是酶本身在界面上被吸附修饰。最近发展了不同的方法来进一步澄清这一点。通过对脂肪酶进行化学修饰得到的结果与下面的假设一致。活性位点预先存在于溶液中,只有通过与酶分子上的附加位点相互作用才能完全发挥作用,该附加位点可以暂时称为“界面激活位点”。最后,一种低分子量的蛋白质,即脂酶,似乎是脂肪酶在生理条件下表达其活性所必需的。这种蛋白质与胆汁盐胶束进行特定的相互作用,并负责逆转这些洗涤剂对脂解的抑制作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pancreatic lipase and colipase: an example of heterogeneous biocatalysis.

The hydrolytic reactions catalyzed by pancreatic lipase represent a good example of heterogeneous catalysis. The particularity of this enzyme is provided by its preferential action on emulsified substrates. The first step of catalysis resides in a reversible adsorption of the enzyme to the oil-water interface. In fact, the formation of this adsorption complex is an obligatory step for the enzyme to display its full activity. Two principal but not necessarily exclusive hypotheses have been proposed to explain the observed interfacial activation: Either the interface confers new properties on the substrate which allow its subsequent hydrolysis, or the enzyme itself is modified by adsorption at the interface. Different approaches have recently been developed to clarify this point further. The results obtained by chemical modifications of lipase are consistent with the following hypothesis. The active site preexists in solution and becomes fully functional only by interaction of the interface with an additional site on the enzyme molecule which can be tentatively called the "interfacial activation site." Finally, a protein of low molecular weight, colipase, seems necessary for lipase to express its activity under physiological conditions. This protein enters specific interactions with bile salts micelles and is responsible for the reversal of the inhibition of lipolysis brought about by these detergents.

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