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暗褐链霉菌磷脂酶D在仿生膜中的转磷脂酰基活性

Transphosphatidylation activity of Streptomyces chromofuscus phospholipase D in biomimetic membranes.

作者信息

El Kirat Karim, Prigent Annie-France, Chauvet Jean-Paul, Roux Bernard, Besson Françoise

机构信息

Laboratoire de Physico-Chimie Biologique, UMR CNRS 5013, Villeurbanne, Lyon, France.

出版信息

Eur J Biochem. 2003 Nov;270(22):4523-30. doi: 10.1046/j.1432-1033.2003.03841.x.

Abstract

The phospholipase D (PLD) from Streptomyces chromofuscus belongs to the superfamily of PLDs. All the enzymes included in this superfamily are able to catalyze both hydrolysis and transphosphatidylation activities. However, S. chromofuscus PLD is calcium dependent and is often described as an enzyme with weak transphosphatidylation activity. S. chromofuscus PLD-catalyzed hydrolysis of phospholipids in aqueous medium leads to the formation of phosphatidic acid. Previous studies have shown that phosphatidic acid-calcium complexes are activators for the hydrolysis activity of this bacterial PLD. In this work, we investigated the influence of diacylglycerols (naturally occurring alcohols) as candidates for the transphosphatidylation reaction. Our results indicate that the transphosphatidylation reaction may occur using diacylglycerols as a substrate and that the phosphatidylalcohol produced can be directly hydrolyzed by PLD. We also focused on the surface pressure dependency of PLD-catalyzed hydrolysis of phospholipids. These experiments provided new information about PLD activity at a water-lipid interface. Our findings showed that classical phospholipid hydrolysis is influenced by surface pressure. In contrast, phosphatidylalcohol hydrolysis was found to be independent of surface pressure. This latter result was thought to be related to headgroup hydrophobicity. This work also highlights the physiological significance of phosphatidylalcohol production for bacterial infection of eukaryotic cells.

摘要

来自暗产色链霉菌的磷脂酶D(PLD)属于PLD超家族。该超家族中的所有酶都能够催化水解和转磷脂酰基活性。然而,暗产色链霉菌PLD依赖于钙,通常被描述为一种转磷脂酰基活性较弱的酶。暗产色链霉菌PLD在水介质中催化磷脂水解会导致磷脂酸的形成。先前的研究表明,磷脂酸 - 钙复合物是这种细菌PLD水解活性的激活剂。在这项工作中,我们研究了二酰基甘油(天然存在的醇类)作为转磷脂酰基反应候选物的影响。我们的结果表明,使用二酰基甘油作为底物可能会发生转磷脂酰基反应,并且产生的磷脂醇可被PLD直接水解。我们还关注了PLD催化的磷脂水解对表面压力的依赖性。这些实验提供了关于PLD在水 - 脂界面活性的新信息。我们的研究结果表明,经典的磷脂水解受表面压力影响。相比之下,发现磷脂醇水解与表面压力无关。后一个结果被认为与头部基团的疏水性有关。这项工作还强调了磷脂醇产生对真核细胞细菌感染的生理意义。

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