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十六醇对膜磷脂中胆固醇的置换作用。

Cholesterol displacement from membrane phospholipids by hexadecanol.

作者信息

Ratajczak Maria K, Ko Y T Chris, Lange Yvonne, Steck Theodore L, Lee Ka Yee C

机构信息

Department of Physics, Institute for Biophysical Dynamics and James Franck Institute, The University of Chicago, Chicago, IL 60637, USA.

出版信息

Biophys J. 2007 Sep 15;93(6):2038-47. doi: 10.1529/biophysj.107.109553. Epub 2007 May 25.

Abstract

Adding cholesterol to monolayers of certain phospholipids drives the separation of liquid-ordered from liquid-disordered domains. The ordered phases appear to contain stoichiometric complexes of cholesterol and phospholipid. Furthermore, it has been suggested that the cholesterol in these complexes has a low chemical activity compared to that of the free sterol; i.e., that in excess of the phospholipid binding capacity. We have now tested the hypothesis that the membrane intercalator 1-hexadecanol (HD) similarly associates with phospholipids and thereby displaces the complexed cholesterol. HD introduced into monolayers of pure dimyristoylphosphatidylcholine generated highly condensed (stable and solid) domains. In contrast, the phase behavior of mixed monolayers of the phospholipid, sterol, and alcohol suggested that HD could substitute for cholesterol mole for mole in promoting liquid-ordered domains. We also found that the transfer of cholesterol from mixed monolayers to aqueous cyclodextrin was greatly stimulated by the presence of HD, but only at levels sufficient to competitively displace the sterol from the phospholipid. This enhanced efflux was interpreted to reflect an increase in uncomplexed cholesterol. We conclude that HD forms complexes with dimyristoylphosphatidylcholine that are surprisingly similar to those of cholesterol. HD competitively displaces cholesterol from the phospholipid and thereby increases its chemical activity.

摘要

向某些磷脂单分子层中添加胆固醇会促使液相有序域与液相无序域分离。有序相似乎包含胆固醇与磷脂的化学计量复合物。此外,有人提出这些复合物中的胆固醇与游离甾醇相比具有较低的化学活性;即,超过磷脂结合能力的部分。我们现在测试了以下假设:膜嵌入剂1 - 十六醇(HD)同样会与磷脂结合,从而取代复合胆固醇。引入到纯二肉豆蔻酰磷脂酰胆碱单分子层中的HD产生了高度凝聚(稳定且固态)的区域。相比之下,磷脂、甾醇和醇的混合单分子层的相行为表明,HD在促进液相有序域方面可以与胆固醇以摩尔比进行替代。我们还发现,HD的存在极大地促进了胆固醇从混合单分子层向水性环糊精的转移,但只有在足以竞争性地将甾醇从磷脂中置换出来的水平下才会如此。这种增强的流出被解释为反映了未复合胆固醇的增加。我们得出结论,HD与二肉豆蔻酰磷脂酰胆碱形成的复合物与胆固醇形成的复合物惊人地相似。HD竞争性地从磷脂中置换胆固醇,从而增加其化学活性。

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