Gadd M E, Biltonen R L
Departments of Biochemistry and Molecular Genetics and Pharmacology, University of Virginia, Charlottesville, Virginia 22908, USA.
Biochemistry. 2000 Aug 15;39(32):9623-31. doi: 10.1021/bi000322f.
The first requirement in the hydrolysis of phospholipid bilayers by phospholipase A(2) is the interaction of the enzyme with the bilayer surface. The catalytic ability of phospholipase A(2) has been shown to be extremely sensitive to the topology of the bilayer to which it binds and hydrolyzes. Phospholipid bilayer properties and composition such as unsaturation, charge, and the presence of reaction products are known regulators of the catalytic activity of phospholipase A(2) toward the phospholipids and influences the binding of enzyme to the membrane. We show in this paper that the effect of increased anionic lipid results in enhanced binding that can be described quantitatively in terms of a simple phenomenological model. However, the interaction with anionic lipid does not singularly dominate the thermodynamics of binding, nor can the lag phase observed in the time course of hydrolysis of large unilamellar vesicles simply be the result of limited interaction between the enzyme and the bilayer. Furthermore, we show that phospholipase A(2) from Akgistrodon piscivorus piscivorus can exist in at least two bilayer-bound states and that the absence of a fluorescence change upon mixing the enzyme with lipid bilayers does not necessarily indicate the absence of an interaction.
磷脂酶A(2)对磷脂双层进行水解的首要条件是该酶与双层表面的相互作用。已表明磷脂酶A(2)的催化能力对其结合并水解的双层的拓扑结构极为敏感。磷脂双层的性质和组成,如不饱和度、电荷以及反应产物的存在,都是磷脂酶A(2)对磷脂催化活性的已知调节因子,并会影响酶与膜的结合。我们在本文中表明,阴离子脂质增加的影响会导致结合增强,这可以用一个简单的唯象模型进行定量描述。然而,与阴离子脂质的相互作用并非唯一主导结合的热力学过程,而且在大单层囊泡水解的时间进程中观察到的延迟期也并非仅仅是酶与双层之间有限相互作用的结果。此外,我们表明,来自食鱼蝮蛇的磷脂酶A(2)至少可以以两种双层结合状态存在,并且将该酶与脂质双层混合时荧光没有变化并不一定表明不存在相互作用。