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蜂毒溶血肽与两性离子及带负电荷的磷脂双层的相互作用:一项自旋标记电子自旋共振研究

Interaction of bee venom melittin with zwitterionic and negatively charged phospholipid bilayers: a spin-label electron spin resonance study.

作者信息

Kleinschmidt J H, Mahaney J E, Thomas D D, Marsh D

机构信息

Max-Planck-Institut für biophysikalische Chemie, Abteilung Spektroskopie, Göttingen, Germany.

出版信息

Biophys J. 1997 Feb;72(2 Pt 1):767-78. doi: 10.1016/s0006-3495(97)78711-3.

Abstract

Electron spin resonance (ESR) spectroscopy was used to study the penetration and interaction of bee venom melittin with dimyristoylphosphatidylcholine (DMPC) and ditetradecylphosphatidylglycerol (DTPG) bilayer membranes. Melittin is a surface-active, amphipathic peptide and serves as a useful model for a variety of membrane interactions, including those of presequences and signal peptides, as well as the charged subdomain of the cardiac regulatory protein phospholamban. Derivatives of phosphatidylcholine and phosphatidylglycerol spin-labeled at various positions along the sn-2 acyl chain were used to establish the chain flexibility gradient for the two membranes in the presence and absence of melittin. Negatively charged DTPG bilayer membranes showed a higher capacity for binding melittin without bilayer disruption than did membranes formed by the zwitterionic DMPC, demonstrating the electrostatic neutralization of bound melittin by DTPG. The temperature dependence of the ESR spectra showed that the gel-to-liquid crystalline phase transition is eliminated by binding melittin to DTPG bilayers, whereas a very broad transition remains in the case of DMPC bilayers. None of the spin labels used showed a two-component spectrum characteristic of a specific restriction of their chain motion by melittin, but the outer hyperfine splittings and effective chain order parameters were increased for all labels upon binding melittin. This indicates a reduced flexibility of the lipid chains induced by a surface orientation of the bound melittin. Whereas the characteristic shape of the chain flexibility gradient was maintained upon melittin addition to DMPC bilayers, the chain flexibility profile in DTPG bilayers was much more strongly perturbed. It was found that the steepest change in segmental flexibility was shifted toward the bilayer interior when melittin was bound to DTPG membranes, indicating a greater depth of penetration than in DMPC membranes. pH titration of stearic acid labeled at the C-5 position, used as a probe of interfacial interactions, showed net downward shifts in interfacial pK of 0.8 and 1.2 pH units contributed from the positive charge of melittin, outweighing upward shifts from interfacial dehydration, when melittin was bound to DTPG and DMPC, respectively. The perturbation of the outer hyperfine splitting was used to determine the interactions of melittin with spin-labeled lipids of different polar headgroups in DTPG and DMPC. Anionic lipids (phosphatidylserine, phosphatidylglycerol, and stearic acid) and zwitterionic lipids (phosphatidylethanolamine and phosphatidylcholine) had the largest outer splittings in the presence of melittin. Neutral lipids (protonated stearic acid and diacylglycerol) displayed the largest increase in outer splitting on binding melittin, which was attributed to a change in the vertical location of these lipids in the bilayer. Both effects were more pronounced in DTPG than in DMPC.

摘要

电子自旋共振(ESR)光谱法被用于研究蜂毒溶血磷脂与二肉豆蔻酰磷脂酰胆碱(DMPC)和二月桂酰磷脂酰甘油(DTPG)双层膜的渗透及相互作用。溶血磷脂是一种具有表面活性的两亲性肽,可作为多种膜相互作用的有用模型,包括前导序列和信号肽的相互作用,以及心脏调节蛋白受磷蛋白的带电亚结构域的相互作用。沿着sn-2酰基链在不同位置进行自旋标记的磷脂酰胆碱和磷脂酰甘油衍生物,被用于确定在有和没有溶血磷脂存在的情况下两种膜的链柔性梯度。带负电荷的DTPG双层膜在不破坏双层结构的情况下结合溶血磷脂的能力,比两性离子DMPC形成的膜更高,这表明DTPG对结合的溶血磷脂进行了静电中和。ESR光谱的温度依赖性表明,溶血磷脂与DTPG双层膜结合会消除凝胶-液晶相转变,而在DMPC双层膜的情况下仍存在非常宽的转变。所使用的自旋标记均未显示出因溶血磷脂对其链运动的特定限制而具有的双组分光谱特征,但结合溶血磷脂后所有标记的外超精细分裂和有效链序参数均增加。这表明结合的溶血磷脂的表面取向导致脂质链的柔性降低。虽然向DMPC双层膜中添加溶血磷脂后链柔性梯度的特征形状得以保持,但DTPG双层膜中的链柔性分布受到的干扰要大得多。研究发现,当溶血磷脂与DTPG膜结合时,链段柔性的最陡变化向双层内部移动,这表明其穿透深度比在DMPC膜中更大。作为界面相互作用探针的在C-5位置标记的硬脂酸的pH滴定表明,当溶血磷脂分别与DTPG和DMPC结合时,由于溶血磷脂的正电荷导致界面pK净向下移动0.8和1.2个pH单位,超过了界面脱水导致的向上移动。外超精细分裂的扰动被用于确定溶血磷脂与DTPG和DMPC中不同极性头部基团的自旋标记脂质的相互作用。在有溶血磷脂存在的情况下,阴离子脂质(磷脂酰丝氨酸、磷脂酰甘油和硬脂酸)和两性离子脂质(磷脂酰乙醇胺和磷脂酰胆碱)具有最大的外分裂。中性脂质(质子化硬脂酸和二酰基甘油)在结合溶血磷脂时外分裂增加最大,这归因于这些脂质在双层膜中垂直位置发生了变化。这两种效应在DTPG中比在DMPC中更明显。

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