Snijder H J, Dijkstra B W
Laboratory of Biophysical Chemistry, BIOSON Research Institute, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands.
Biochim Biophys Acta. 2000 Oct 31;1488(1-2):91-101. doi: 10.1016/s1388-1981(00)00113-x.
Within the large family of lipolytic enzymes, phospholipases constitute a very diverse subgroup with physiological functions such as digestion and signal transduction. Most phospholipases may associate with membranes at the lipid-water interface. However, in many Gram-negative bacteria, a phospholipase is present which is located integrally in the bacterial outer membrane. This phospholipase (outer membrane phospholipase A or OMPLA) is involved in transport across the bacterial outer membrane and has been implicated in bacterial virulence. OMPLA is calcium dependent and its activity is strictly regulated by reversible dimerisation. Recently the crystal structure of this integral membrane enzyme has been elucidated. In this review, we summarise the implications of these structural data for the understanding of the function and regulation of OMPLA, and discuss a mechanism for phospholipase dependent colicin release in Escherichia coli.
在庞大的脂解酶家族中,磷脂酶构成了一个非常多样化的亚组,具有诸如消化和信号转导等生理功能。大多数磷脂酶可能在脂质-水界面处与膜结合。然而,在许多革兰氏阴性细菌中,存在一种磷脂酶,它整体位于细菌外膜中。这种磷脂酶(外膜磷脂酶A或OMPLA)参与跨细菌外膜的转运,并与细菌毒力有关。OMPLA依赖于钙,其活性受到可逆二聚化的严格调控。最近,这种整合膜酶的晶体结构已被阐明。在这篇综述中,我们总结了这些结构数据对理解OMPLA的功能和调控的意义,并讨论了大肠杆菌中磷脂酶依赖性大肠杆菌素释放的机制。