Giocondi Marie-Cécile, Milhiet Pierre Emmanuel, Dosset Patrice, Le Grimellec Christian
Centre de Biochimie Structurale, CNRS UMR 5048-Université Montpellier I, INSERM UMR554, 34090 Montpellier Cedex, France.
Biophys J. 2004 Feb;86(2):861-9. doi: 10.1016/s0006-3495(04)74161-2.
The lipid rafts membrane microdomains, enriched in sphingolipids and cholesterol, are implicated in numerous functions of biological membranes. Using atomic force microscopy, we have examined the effects of cholesterol-loaded methyl-beta-cyclodextrin (MbetaCD-Chl) addition to liquid disordered (l(d))-gel phase separated dioleoylphosphatidylcholine (DOPC)/sphingomyelin (SM) and 1-palmitoyl-2-oleoyl phosphatidylcholine (POPC)/SM supported bilayers. We observed that incubation with MbetaCD-Chl led to the disappearance of domains with the formation of a homogeneously flat bilayer, most likely in the liquid-ordered (l(o)) state. However, intermediate stages differed with the passage through the coexistence of l(o)-l(d) phases for DOPC/SM samples and of l(o)-gel phases for POPC/SM bilayers. Thus, gel phase SM domains surrounded by a l(o) matrix rich in cholesterol and POPC could be observed just before reaching the uniform l(o) state. This suggests that raft formation in biological membranes could occur not only via liquid-liquid but also via gel-liquid immiscibility. The data also demonstrate that MbetaCD-Chl as well as the unloaded cyclodextrin MbetaCD make holes and preferentially extract SM in supported bilayers. This strongly suggests that interpretation of MbetaCD and MbetaCD-Chl effects on cell membranes only in terms of cholesterol movements have to be treated with caution.
富含鞘脂和胆固醇的脂筏膜微区与生物膜的多种功能有关。我们使用原子力显微镜研究了向液态无序(l(d))-凝胶相分离的二油酰磷脂酰胆碱(DOPC)/鞘磷脂(SM)和1-棕榈酰-2-油酰磷脂酰胆碱(POPC)/SM支撑双层中添加载胆固醇的甲基-β-环糊精(MbetaCD-Chl)的影响。我们观察到,与MbetaCD-Chl孵育导致微区消失,形成均匀的扁平双层,很可能处于液态有序(l(o))状态。然而,中间阶段有所不同,DOPC/SM样品会经历l(o)-l(d)相共存阶段,而POPC/SM双层会经历l(o)-凝胶相共存阶段。因此,在达到均匀的l(o)状态之前,可以观察到被富含胆固醇和POPC的l(o)基质包围的凝胶相SM微区。这表明生物膜中脂筏的形成不仅可以通过液-液不混溶,还可以通过凝胶-液不混溶发生。数据还表明,MbetaCD-Chl以及未负载的环糊精MbetaCD会在支撑双层中形成孔洞并优先提取SM。这强烈表明,仅根据胆固醇的移动来解释MbetaCD和MbetaCD-Chl对细胞膜的影响时必须谨慎对待。