Watnick P I, Chan S I, Dea P
Arthur Amos Noyes Laboratory of Chemical Physics, California Institute of Technology, Pasadena 91125.
Biochemistry. 1990 Jul 3;29(26):6215-21. doi: 10.1021/bi00478a015.
Gramicidin A' (GA') has been added to three lipid systems of varying hydrophobic thicknesses: dimyristoyllecithin (DML), dipalmitoyllecithin (DPL), and distearoyllecithin (DSL). The similarity in length between the hydrophobic portion of GA' and the hydrocarbon chains of the lipid bilayers has been studied by using 31P and 2H NMR. Hydrophobic mismatch has been found to be most severe in the DML bilayer system and minimal in the case of DSL. In addition, the effects of hydrophobic mismatch on the cooperative properties of the bilayer have been obtained from 2H NMR relaxation measurements. The results indicate that incorporation of the peptide into the bilayer disrupts the cooperative director fluctuations characteristic of pure multilamellar lipid dispersions. Finally, the GA'/lecithin ratio at which the well-known transformation from bilayer to reverse hexagonal (HII) phase occurs (Van Echteld et al., 1982; Chupin et al., 1987) is shown to depend on the acyl chain length of the phospholipid. A rationale is proposed for this chain length dependence.
短杆菌肽A'(GA')已被添加到三种具有不同疏水厚度的脂质体系中:二肉豆蔻酰卵磷脂(DML)、二棕榈酰卵磷脂(DPL)和二硬脂酰卵磷脂(DSL)。通过使用31P和2H核磁共振研究了GA'的疏水部分与脂质双层烃链之间长度的相似性。已发现疏水不匹配在DML双层体系中最为严重,而在DSL情况下最小。此外,通过2H核磁共振弛豫测量获得了疏水不匹配对双层协同性质的影响。结果表明,将肽掺入双层会破坏纯多层脂质分散体特有的协同指向矢波动。最后,众所周知的从双层到反相六角(HII)相转变发生时的GA'/卵磷脂比率(Van Echteld等人,1982年;Chupin等人,1987年)显示取决于磷脂的酰基链长度。针对这种链长依赖性提出了一种基本原理。