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关于短杆菌肽诱导的六方HII相磷脂酰基链顺序和动力学的2H核磁共振研究。

2H-nuclear magnetic resonance investigations on phospholipid acyl chain order and dynamics in the gramicidin-induced hexagonal HII phase.

作者信息

Chupin V, Killian J A, de Kruijff B

出版信息

Biophys J. 1987 Mar;51(3):395-405. doi: 10.1016/S0006-3495(87)83361-1.

Abstract

The following results are reported in this paper: The interaction of gramicidin with [11,11-2H2]dioleoylphosphatidylcholine (DOPC) and [11,11-2H2]dioleoylphosphatidylethanolamine (DOPE) at different stages of hydration was studied by 2H- and 31P-nuclear magnetic resonance. In the L alpha phase in excess water the acyl chains of phosphatidylethanolamine (PE) are more ordered than phosphatidylcholine (PC) most likely as the result of the lower headgroup hydration of the former lipid. In excess water gramicidin incorporation above 5 mol % in DOPC causes a bilayer----hexagonal HII phase change. In the HII phase acyl chain order is virtually unaffected by gramicidin but the peptide restricts the fast chain motions. At low water content gramicidin cannot induce the HII phase but it markedly decreases chain order in the DOPC bilayer. Increasing water content results in separation between a gramicidin-poor and a gramicidin-rich L alpha phase with decreased order of the entire lipid molecule. Further increase in hydration reverts at low gramicidin contents the phase separation and at high gramicidin contents results in a direct change of the disordered lamellar to the hexagonal HII phase. Gramicidin also promotes HII phase formation in the PE system but interacts much less strongly with PE than with PC. The results support our hypothesis that gramicidin, by a combination of strong intermolecular attraction forces and its pronounced cone shape, both involving the four tryptophans at the COOH-terminus, has a strong tendency to organize, with the appropriate lipid, in intramembranous cylindrical structures such as is found in the HII phase.

摘要

本文报道了以下结果

通过2H和31P核磁共振研究了短杆菌肽与[11,11-2H2]二油酰磷脂酰胆碱(DOPC)和[11,11-2H2]二油酰磷脂酰乙醇胺(DOPE)在不同水合阶段的相互作用。在过量水的Lα相中,磷脂酰乙醇胺(PE)的酰基链比磷脂酰胆碱(PC)更有序,这很可能是由于前一种脂质的头部基团水合程度较低。在过量水中,DOPC中短杆菌肽掺入量超过5 mol%会导致双层向六方HII相转变。在HII相中,酰基链的有序性实际上不受短杆菌肽的影响,但该肽会限制链的快速运动。在低含水量时,短杆菌肽不能诱导HII相,但它会显著降低DOPC双层中的链有序性。含水量增加会导致贫短杆菌肽的Lα相和富短杆菌肽的Lα相分离,整个脂质分子的有序性降低。进一步增加水合程度,在低短杆菌肽含量时会逆转相分离,在高短杆菌肽含量时会导致无序层状相直接转变为六方HII相。短杆菌肽也促进了PE体系中HII相的形成,但与PE的相互作用比与PC的相互作用弱得多。这些结果支持了我们的假设,即短杆菌肽通过强大的分子间吸引力及其明显的锥形形状(两者都涉及COOH末端的四个色氨酸),有很强的趋势与合适的脂质在膜内形成圆柱形结构,如在HII相中发现的那样。

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