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基于静电计算预测ACBP与膜相互作用中最有利的构型。

Prediction of the most favorable configuration in the ACBP-membrane interaction based on electrostatic calculations.

作者信息

Vallejo Diego F, Zamarreño Fernando, Guérin Diego M A, Grigera J Raul, Costabel Marcelo D

机构信息

Instituto de Física de Líquidos y Sistemas Biológicos (IFLYSIB) CCT La Plata- CONICET- UNLP-CIC, La Plata, Argentina.

出版信息

Biochim Biophys Acta. 2009 Mar;1788(3):696-700. doi: 10.1016/j.bbamem.2008.12.007. Epub 2008 Dec 25.

Abstract

Acyl-CoA binding proteins (ACBPs) are highly conserved 10 kDa cytosolic proteins that bind medium- and long-chain acyl-CoA esters. They act as intracellular carriers of acyl-CoA and play a role in acyl-CoA metabolism, gene regulation, acyl-CoA-mediated cell signaling, transport-mediated lipid synthesis, membrane trafficking and also, ACBPs were indicated as a possible inhibitor of diazepam binding to the GABA-A receptor. To estimate the importance of the non-specific electrostatic energy in the ACBP-membrane interaction, we computationally modeled the interaction of HgACBP with both anionic and neutral membranes. To compute the Free Electrostatic Energy of Binding (dE), we used the Finite Difference Poisson Boltzmann Equation (FDPB) method as implemented in APBS. In the most energetically favorable orientation, ACBP brings charged residues Lys18 and Lys50 and hydrophobic residues Met46 and Leu47 into membrane surface proximity. This conformation suggests that these four ACBP amino acids are most likely to play a leading role in the ACBP-membrane interaction and ligand intake. Thus, we propose that long range electrostatic forces are the first step in the interaction mechanism between ACBP and membranes.

摘要

酰基辅酶A结合蛋白(ACBPs)是高度保守的10 kDa胞质蛋白,可结合中链和长链酰基辅酶A酯。它们作为酰基辅酶A的细胞内载体,在酰基辅酶A代谢、基因调控、酰基辅酶A介导的细胞信号传导、转运介导的脂质合成、膜运输中发挥作用,并且,ACBPs被认为是地西泮与GABA - A受体结合的可能抑制剂。为了评估非特异性静电能在ACBP - 膜相互作用中的重要性,我们通过计算模拟了HgACBP与阴离子膜和中性膜的相互作用。为了计算结合的自由静电能(dE),我们使用了APBS中实现的有限差分泊松玻尔兹曼方程(FDPB)方法。在能量最有利的取向中,ACBP将带电荷的残基Lys18和Lys50以及疏水残基Met46和Leu47带到膜表面附近。这种构象表明这四个ACBP氨基酸最有可能在ACBP - 膜相互作用和配体摄取中起主导作用。因此,我们提出长程静电力是ACBP与膜相互作用机制的第一步。

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