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蛋白质诱导的膜紊乱:蜂毒肽在二棕榈酰磷脂酰胆碱双层膜中的分子动力学研究

Protein-induced membrane disorder: a molecular dynamics study of melittin in a dipalmitoylphosphatidylcholine bilayer.

作者信息

Bachar M, Becker O M

机构信息

School of Chemistry, Tel Aviv University, Ramat Aviv, Tel Aviv 69978, Israel.

出版信息

Biophys J. 2000 Mar;78(3):1359-75. doi: 10.1016/S0006-3495(00)76690-2.

Abstract

A molecular dynamics simulation of melittin in a hydrated dipalmitoylphosphatidylcholine (DPPC) bilayer was performed. The 19, 000-atom system included a 72-DPPC phospholipid bilayer, a 26-amino acid peptide, and more than 3000 water molecules. The N-terminus of the peptide was protonated and embedded in the membrane in a transbilayer orientation perpendicular to the surface. The simulation results show that the peptide affects the lower (intracellular) layer of the bilayer more strongly than the upper (extracellular) layer. The simulation results can be interpreted as indicating an increased level of disorder and structural deformation for lower-layer phospholipids in the immediate vicinity of the peptide. This conclusion is supported by the calculated deuterium order parameters, the observed deformation at the intracellular interface, and an increase in fractional free volume. The upper layer was less affected by the embedded peptide, except for an acquired tilt relative to the bilayer normal. The effect of melittin on the surrounding membrane is localized to its immediate vicinity, and its asymmetry with respect to the two layers may result from the fact that it is not fully transmembranal. Melittin's hydrophilic C-terminus anchors it at the extracellular interface, leaving the N-terminus "loose" in the lower layer of the membrane. In general, the simulation supports a role for local deformation and water penetration in melittin-induced lysis. As for the peptide, like other membrane-embedded polypeptides, melittin adopts a significant 25 degree tilt relative to the membrane normal. This tilt is correlated with a comparable tilt of the lipids in the upper membrane layer. The peptide itself retains an overall helical structure throughout the simulation (with the exception of the three N-terminal residues), adopting a 30 degree intrahelical bend angle.

摘要

进行了蜂毒肽在水合二棕榈酰磷脂酰胆碱(DPPC)双层膜中的分子动力学模拟。这个包含19000个原子的系统包括一个由72个DPPC磷脂组成的双层膜、一个26个氨基酸的肽以及3000多个水分子。肽的N端被质子化,并以垂直于表面的跨膜方向嵌入膜中。模拟结果表明,该肽对双层膜的下层(细胞内)的影响比上层(细胞外)更强。模拟结果可以解释为,在肽紧邻区域的下层磷脂的无序程度增加和结构变形。这一结论得到了计算出的氘序参数、在细胞内界面观察到的变形以及自由体积分数增加的支持。除了相对于双层膜法线获得倾斜外,上层受嵌入肽的影响较小。蜂毒肽对周围膜的影响局限于其紧邻区域,其相对于两层的不对称性可能是由于它没有完全跨膜。蜂毒肽的亲水性C端将其锚定在细胞外界面,使N端在膜的下层“松散”。总体而言,模拟结果支持局部变形和水渗透在蜂毒肽诱导的细胞裂解中起作用。至于该肽,与其他嵌入膜的多肽一样,蜂毒肽相对于膜法线有显著的25度倾斜。这种倾斜与上膜层脂质的类似倾斜相关。在整个模拟过程中,该肽本身保持整体螺旋结构(除了三个N端残基),螺旋内弯曲角度为30度。

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