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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cholesterol stabilizes hemifused phospholipid bilayer vesicles
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Cholesterol stabilizes hemifused phospholipid bilayer vesicles

机译:胆固醇稳定半融合磷脂双层囊泡

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摘要

Cholesterol was found to inhibit full fusion of oppositely charged phospholipid bilayer vesicles by stabilizing the contacting membranes at the stage of the hemifused intermediate. Vesicles of opposite charge containing different amounts of cholesterol were prepared using cationic (1,2-dioleoyl-sn-glycero-3-ethylphosphocholine) and anionic (dioleoylphos-phatidylglycerol) phospholipids. Pairwise interactions between such vesicles were observed by fluorescence video microscopy in real time after electrophoretically maneuvering the vesicles into contact. Hemifusion accounted for more than 80% of the observed events when the vesicles contained 33-50 mole% cholesterol. In contrast, vesicles containing only a small proportion of cholesterol (≤10 mole%), underwent full fusion in approx. 70% of the interactions monitored. The role of cholesterol is explained both as favoring the formation of the hemifused intermediate according to the adhesion-condensation mechanism of bilayer fusion and as disfavoring the transition from hemifusion to full fusion on the basis of reduced tension in the vesicle bilayers.
机译:发现胆固醇通过在半融合中间体的阶段稳定接触膜来抑制带相反电荷的磷脂双层囊泡的完全融合。使用阳离子(1,2-油酰-sn-甘油-3-乙基磷酸胆碱)和阴离子(油酰磷-磷脂酰甘油)磷脂制备含有不同量胆固醇的带相反电荷的囊泡。电泳操纵囊泡接触后,通过荧光视频显微镜实时观察这些囊泡之间的成对相互作用。当囊泡中含有33-50摩尔%的胆固醇时,半融合占观察到事件的80%以上。相比之下,仅包含少量胆固醇(≤10摩尔%)的囊泡在大约30分钟内经历了完全融合。已监控70%的互动。胆固醇的作用既解释为根据双层融合的粘附-浓缩机理促进半融合中间体的形成,又解释为由于囊泡双层中张力降低而不利于从半融合向完全融合的过渡。

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