压力如何诱导磷脂双层膜相互咬合的分子机制。

IF 2.8 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Masaki Goto , Shuntaro Yoshida , Shigeyuki Habara , Agnieszka Wilk-Kohlbrecher , Joachim Kohlbrecher , Nobutake Tamai , Hitoshi Matsuki
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引用次数: 0

摘要

通过压力扫描显微镜、荧光测定法和动态光散射(DLS)测量法,研究了含有两种饱和长链脂肪酸的磷脂酰胆碱(PC)双层膜在高压下从波纹凝胶相到交错凝胶相的相变。在高压下对二硬脂酰-PC(DSPC)巨泡(GVs)的显微观察表明,球形 GVs 在压力诱导的交联过程中瞬间明显转变为扭曲变形的球形 GVs。双棕榈酰-PC(DPPC)双分子层中的亲水探针 Prodan 和疏水探针 Laurdan 的荧光强度在交界面处分别急剧下降和升高,表明双分子层中 DPPC 分子的极性头基在交界面处发生了瞬时构象变化。此外,高压 DLS 测量还发现,DPPC 和 DSPC 的囊泡颗粒大小在交界面压力附近瞬时增大,而在常压下通过向 DSPC 双层膜中添加乙醇进行化学诱导交界面时,颗粒大小没有发生这种变化。考虑到 PC 分子的临界堆积参数,上述实验结果使我们得出结论,压力诱导的互咬是由于 PC 分子的极性头基在施加压力时,相对于双分子层表面的方向从平行排列变为垂直排列,从而导致极性头基之间的排斥作用增加,即瞬态:当排斥作用超过疏水酰基链之间排斥作用和吸引作用平衡的临界值时,就会出现瞬态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A molecular mechanism for how pressure induces interdigitation of phospholipid bilayer membranes

A molecular mechanism for how pressure induces interdigitation of phospholipid bilayer membranes
The phase transition from the ripple gel phase to the interdigitated gel phase of bilayers of phosphatidylcholines (PCs) with two saturated long-chain fatty acids under high pressure was investigated by pressure-scanning microscopy, fluorometry, and dynamic light scattering (DLS) measurements. Microscopic observation for giant vesicles (GVs) of distearoyl-PC (DSPC) under high pressure showed that spherical GVs transforms significantly into warped and distorted spherical ones instantaneously at the pressure-induced interdigitation. The fluorescence intensities of amphiphilic probe Prodan and hydrophobic probe Laurdan in the dipalmitoyl-PC (DPPC) bilayer steeply decreased and increased, respectively, at the interdigitation, suggesting that the conformational change of the polar head group of DPPC molecule in the bilayer transiently occurred at the interdigitation. Further, it was found from the high-pressure DLS measurements that the size of the vesicle particles of the DPPC and DSPC transiently increases near the interdigitation pressure, whereas the chemically induced interdigitation by adding ethanol to the DSPC bilayer membrane under atmospheric pressure produce no such change in the particle size. Taking account of the critical packing parameter of the PC molecule, the above experimental results would lead us to the conclusion that the pressure-induced interdigitation is attributable to the increase in repulsive interaction between the polar head groups of the PC molecules resulting from the orientational change of the head group from a parallel alignment to a perpendicular one with respect to the bilayer surface by applying pressure, namely the transient state: it occurs when the repulsive interaction exceeds a threshold value for the balance between the repulsive interaction and the attractive interaction among the hydrophobic acyl chains.
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来源期刊
Biochimica et biophysica acta. Biomembranes
Biochimica et biophysica acta. Biomembranes 生物-生化与分子生物学
CiteScore
8.20
自引率
5.90%
发文量
175
审稿时长
2.3 months
期刊介绍: BBA Biomembranes has its main focus on membrane structure, function and biomolecular organization, membrane proteins, receptors, channels and anchors, fluidity and composition, model membranes and liposomes, membrane surface studies and ligand interactions, transport studies, and membrane dynamics.
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