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Effect of sterol structure on ordered membrane domain (raft) stability in symmetric and asymmetric vesicles

机译:甾醇结构对对称和不对称囊泡有序膜结构域(筏子)稳定性的影响

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Sterol structure influences liquid ordered domains in membranes, and the dependence of biological functions on sterol structure can help identify processes dependent on ordered domains. In this study we compared the effect of sterol structure on ordered domain formation in symmetric vesicles composed of mixtures of sphingomyelin, 1, 2-dioleoyl-sn-glycero-3-phosphocholine (DOPC) and cholesterol, and in asymmetric vesicles in which sphingomyelin was introduced into the outer leaflet of vesicles composed of DOPC and cholesterol. In most cases, sterol behavior was similar in symmetric and asymmetric vesicles, with ordered domains most strongly stabilized by 7-dehydrocholesterol (7DHC) and cholesterol, stabilized to a moderate degree by lanosterol, epicholesterol and desmosterol, and very little if at all by 4-cholesten-3-one. However, in asymmetric vesicles desmosterol stabilized ordered domain almost as well as cholesterol, and to a much greater degree than epicholesterol, so that the ability to support ordered domains decreased in the order 7-DHC > cholesterol > desmosterol > lanosterol > epicholesterol > 4-cholesten-3-one. This contrasts with values for intermediate stabilizing sterols in symmetric vesicles in which the ranking was cholesterol > lanosterol similar to desmosterol similar to epicholesterol or prior studies in which the ranking was cholesterol similar to epicholesterol > lanosterol similar to desmosterol. The reasons for these differences are discussed. Based on these results, we re-evaluated our prior studies in cells and conclude that endocytosis levels and bacterial uptake are even more closely correlated with the ability of sterols to form ordered domains than previously thought, and do not necessarily require that a sterol have a 3 beta-OH group.
机译:甾醇结构影响膜中的液体有序结构域,生物功能对甾醇结构的依赖性可以帮助识别依赖于有序结构域的过程。在这项研究中,比较了甾醇结构对对称囊泡的有序结构域形成的效果,由鞘磷脂,1,2-Dioleyl-sn-甘油-3-普膦酸酐(DOPC)和胆固醇的混合物,以及鞘磷脂的不对称囊泡引入到由DOPC和胆固醇组成的囊泡的外瓣叶中。在大多数情况下,甾醇行为在对称和不对称囊泡中类似,有序区域最强烈地稳定7-脱羟基醇(7DHC)和胆固醇,通过Lanterollol,癫痫醇和Desmosterol稳定到中等程度,如果完全达到4 -cholesten-3-one。但是,在不对称的囊泡Desmosterol稳定下降的域几乎和胆固醇,并且比异形异素更大程度,使得支持有序结构域的能力在7-DHC>胆固醇> Desmosterol> Lanteroll>脑蛋白酶>脑蛋白酶> 4-胆汁筋3针。这种对称囊泡中中间稳定甾醇的值对比,其中排名是胆固醇的胆固醇>类似于脱蛋白醇的Lanterol醇,类似于异蛋白醇或先前的研究,其中排名是类似于异蛋白酶的胆固醇> Lanterol醇类似于Desmosterol。讨论了这些差异的原因。基于这些结果,我们重新评估了我们在细胞的先前研究,并得出结论,内吞作用水平和细菌摄取与甾醇形成有序结构域的能力比以前认为,并不一定要求甾醇有一个甾醇3 Beta-OH集团。

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