Vorobyov Igor, Allen Toby W
Department of Chemistry, University of California, Davis, CA 95616-5295, USA.
Biochim Biophys Acta. 2011 Jun;1808(6):1673-83. doi: 10.1016/j.bbamem.2010.11.009. Epub 2010 Nov 10.
We investigate the role of anionic lipids in the binding to, and subsequent movement of charged protein groups in lipid membranes, to help understand the role of membrane composition in all membrane-active protein sequences. We demonstrate a small effect of phosphatidylglycerol (PG) lipids on the ability of an arginine (Arg) side chain to bind to, and cross a lipid membrane, despite possessing a neutralizing charge. We observe similar membrane deformations in lipid bilayers composed of phosphatidylcholine (PC) and PC/PG mixtures, with comparable numbers of water and lipid head groups pulled into the bilayer hydrocarbon core, and prohibitively large ~20 kcal/mol barriers for Arg transfer across each bilayer, dropping by just 2-3 kcal/mol due to the binding of PG lipids. We explore the causes of this small effect of introducing PG lipids and offer an explanation in terms of the limited membrane interaction for the choline groups of PC lipids bound to the translocating ion. Our calculations reveal a surprising lack of preference for Arg binding to PG lipids themselves, but a small increase in interfacial binding affinity for lipid bilayers containing PG lipids. These results help to explain the nature of competitive lipid binding to charged protein sequences, with implications for a wide range of membrane binding domains and cell perturbing peptides.
我们研究了阴离子脂质在与脂质膜中带电蛋白质基团结合及随后的移动过程中的作用,以帮助理解膜组成在所有膜活性蛋白序列中的作用。我们证明了磷脂酰甘油(PG)脂质对精氨酸(Arg)侧链结合并穿过脂质膜的能力影响较小,尽管其带有中和电荷。我们在由磷脂酰胆碱(PC)和PC/PG混合物组成的脂质双层中观察到类似的膜变形,有相当数量的水和脂质头部基团被拉入双层烃核中,并且Arg穿过每个双层的势垒高得令人望而却步,约为20千卡/摩尔,由于PG脂质的结合,势垒仅下降2 - 3千卡/摩尔。我们探究了引入PG脂质产生这种微小影响的原因,并根据与转运离子结合的PC脂质胆碱基团有限的膜相互作用给出了解释。我们的计算结果显示,令人惊讶的是,Arg对PG脂质本身的结合并无偏好,但对于含有PG脂质的脂质双层,其界面结合亲和力略有增加。这些结果有助于解释竞争性脂质与带电蛋白质序列结合的本质,对广泛的膜结合结构域和细胞干扰肽具有启示意义。