Baaden Marc, Meier Christoph, Sansom Mark S P
Department of Biochemistry, University of Oxford, South Parks Road Oxford, OX1 3QU, UK.
J Mol Biol. 2003 Aug 1;331(1):177-89. doi: 10.1016/s0022-2836(03)00718-6.
OMPLA is a phospholipase found in the outer membranes of many Gram-negative bacteria. Enzyme activation requires calcium-induced dimerisation plus bilayer perturbation. As the conformation of OMPLA in the different crystal forms (monomer versus dimer; with/without bound Ca(2+)) is remarkably similar we have used multi-nanosecond molecular dynamics (MD) simulations to probe possible differences in conformational dynamics that may be related to enzyme activation. Simulations of calcium-free monomeric OMPLA, of the Ca(2+)-bound dimer, and of the Ca(2+)-bound dimer with a substrate analogue covalently linked to the active site serine have been performed, all with the protein embedded in a phospholipid (POPC) bilayer. All simulations were stable, but differences in the dynamic behaviour of the protein between the various states were observed. In particular, the stability of the active site and the hydrophobic substrate-binding cleft varied. Dimeric OMPLA is less flexible than monomeric OMPLA, especially around the active site. In the absence of bound substrate analogue, the hydrophobic substrate-binding cleft of dimeric OMPLA collapses. A model is proposed whereby the increased stability of the active site in dimeric OMPLA is a consequence of the local ordering of water around the nearby calcium ion. The observed collapse of the substrate-binding cleft may explain the experimentally observed occurrence of multiple dimer conformations of OMPLA, one of which is fully active while the other shows significantly reduced activity.
外膜磷脂酶A(OMPLA)是一种存在于许多革兰氏阴性菌外膜中的磷脂酶。酶的激活需要钙诱导的二聚化以及双层膜扰动。由于OMPLA在不同晶体形式(单体与二聚体;结合/未结合Ca(2+))下的构象非常相似,我们使用了多纳秒分子动力学(MD)模拟来探究构象动力学中可能与酶激活相关的差异。我们对无钙单体OMPLA、结合Ca(2+)的二聚体以及结合Ca(2+)且活性位点丝氨酸共价连接有底物类似物的二聚体进行了模拟,所有模拟中蛋白质均嵌入磷脂(POPC)双层膜中。所有模拟都很稳定,但观察到了不同状态下蛋白质动态行为的差异。特别是,活性位点和疏水底物结合裂隙的稳定性有所不同。二聚体OMPLA比单体OMPLA的柔韧性差,尤其是在活性位点周围。在没有结合底物类似物的情况下,二聚体OMPLA的疏水底物结合裂隙会塌陷。我们提出了一个模型,即二聚体OMPLA中活性位点稳定性的增加是附近钙离子周围水的局部有序排列的结果。观察到的底物结合裂隙塌陷可能解释了实验中观察到的OMPLA多种二聚体构象的出现,其中一种构象完全有活性,而另一种活性则显著降低。