Epand R M, Bottega R
Biochemistry. 1987 Apr 7;26(7):1820-5. doi: 10.1021/bi00381a005.
Cholesterol lowers the bilayer to hexagonal phase transition temperature of phosphatidylethanolamines up to a mole fraction of about 0.1. At cholesterol mole fractions above about 0.3, the effect of this sterol is to stabilize the bilayer phase. The relatively weak effects of cholesterol in altering the bilayer to hexagonal phase transition temperature can be explained on the basis of lateral phase separation. This is indicated by the horizontal liquidus line for the gel to liquid-crystalline transition in the phase diagram for mixtures of cholesterol with dielaidoylphosphatidylethanolamine (DEPE) as well as the fact that cholesterol does not greatly decrease the cooperativity of the bilayer to hexagonal phase transition. The enthalpy of this latter transition increased with increasing mole fractions of cholesterol. Two oxidation products of cholesterol are 5-cholesten-3 beta,7 alpha-diol and cholestan-3 beta,5 alpha,6 beta-triol. Compared with cholesterol, 5-cholesten-3 beta,7 alpha-diol had a greater effect in decreasing the bilayer to hexagonal phase transition temperature and broadening this transition. It is suggested that its effectiveness is due to its greater solubility in the DEPE. In contrast, cholestan-3 beta,5 alpha,6 beta-triol raises the bilayer to hexagonal phase transition temperature of DEPE. This is due to its larger and more hydrophilic head group. In addition, its length, being shorter than that of DEPE, would not allow it to pack efficiently in a hexagonal phase arrangement. We suggest that this same effect is responsible for cholesterol raising the bilayer to hexagonal phase transition temperature at higher mole fractions.
胆固醇可降低磷脂酰乙醇胺从双层相到六方相的转变温度,直至摩尔分数约为0.1。在胆固醇摩尔分数高于约0.3时,这种甾醇的作用是稳定双层相。胆固醇在改变双层相到六方相转变温度方面相对较弱的作用可以基于横向相分离来解释。这由胆固醇与二油酰磷脂酰乙醇胺(DEPE)混合物相图中凝胶到液晶转变的水平液相线表明,以及胆固醇不会大幅降低双层相到六方相转变的协同性这一事实。后一种转变的焓随胆固醇摩尔分数的增加而增加。胆固醇的两种氧化产物是5-胆甾烯-3β,7α-二醇和胆甾烷-3β,5α,6β-三醇。与胆固醇相比,5-胆甾烯-3β,7α-二醇在降低双层相到六方相转变温度和拓宽该转变方面有更大的作用。据推测,其有效性归因于它在DEPE中的更大溶解度。相反,胆甾烷-3β,5α,6β-三醇提高了DEPE从双层相到六方相的转变温度。这是由于其更大且更亲水的头部基团。此外,它的长度比DEPE短,这将使其无法有效地以六方相排列堆积。我们认为,在较高摩尔分数下胆固醇提高双层相到六方相转变温度也是由同样的效应导致的。