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由具有“类酶”活性的沉淀磷酸镁催化磷酸烯醇式丙酮酸合成焦磷酸。

Pyrophosphate synthesis from phospho(enol)pyruvate catalyzed by precipitated magnesium phosphate with "enzyme-like" activity.

作者信息

Hermes-Lima M, Vieyra A

机构信息

Departamento de Bioquímica, Universidade Federal do Rio de Janeiro, Brazil.

出版信息

J Mol Evol. 1992 Oct;35(4):277-85. doi: 10.1007/BF00161165.

Abstract

The enzyme-like kinetic properties of precipitated magnesium phosphate as a catalyst for formation of pyrophosphate (PPi) from phospho(enol)pyruvate (PEP) are described. This synthesis occurs at a low temperature (37 degrees C) and represents a model that may help us understand the relevance to chemical evolution of minerals as ancient catalysts whose functions could have been taken over by contemporary enzymes. An insoluble Pi.Mg matrix was formed in a medium with 80% of the water replaced by dimethyl sulfoxide as a way of simulating conditions in a drying pond. Phospho(enol)pyruvate adsorbs onto the Pi.Mg surface according to a Langmuir isotherm, and the PEP concentration dependence of PPi formation follows a Michaelian-like function. A yield of 33% for transformation of the initially adsorbed PEP into PPi was attained after 4 days of incubation with equimolecular concentrations of Pi, MgCl2, and PEP. The magnesium concentration dependence for Pi and Mg precipitation, for adsorption of PEP onto solid Pi.Mg, and for PPi formation showed complex cooperative behavior. These results taken as a whole lead to the conclusion that the Pi.Mg surface not only provides a reactant for PPi formation but also catalyzes the reaction.

摘要

本文描述了沉淀磷酸镁作为从磷酸烯醇式丙酮酸(PEP)形成焦磷酸(PPi)的催化剂的类酶动力学特性。这种合成反应在低温(37摄氏度)下发生,代表了一个模型,有助于我们理解矿物质作为古代催化剂与化学进化的相关性,其功能可能已被当代酶所取代。在一种80%的水被二甲基亚砜取代的介质中形成了不溶性的Pi.Mg基质,以此模拟干涸池塘中的条件。磷酸烯醇式丙酮酸根据朗缪尔等温线吸附到Pi.Mg表面,PPi形成的PEP浓度依赖性遵循类似米氏函数。在与等分子浓度的Pi、MgCl2和PEP孵育4天后,最初吸附的PEP转化为PPi的产率达到33%。Pi和Mg沉淀的镁浓度依赖性、PEP在固体Pi.Mg上的吸附以及PPi形成表现出复杂的协同行为。总体而言,这些结果得出结论,Pi.Mg表面不仅为PPi形成提供反应物,还催化该反应。

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