Stuhne-Sekalec L, Stanacev N Z
Can J Biochem. 1977 Feb;55(2):173-85. doi: 10.1139/o77-027.
Several spin-labelled phospholipids carrying covalently bound 5-doxylstearic acid (2-(3-carboxydecyl)-2-hexyl-4,4-dimethyl-3-oxazolidinoxyl) were intercalated in liposomes of saturated and unsaturated lecithins. Temperature-induced changes of these liposomes, detected by the spin-labelled phospholipids, were found to be in agreement with the previously described transitions of hydrocarbon chains of host lecithins detected by different probes and different techniques, establishing that spin-labelled phosopholipids are sensitive probes for the detection of temperature-induced changes in lecithin model membranes. In addition to the detection of already-known transitions in lecithin liposomes, the coexistence of two distinctly different enviroments was observed above the characteristic transition temperature. This phenomenon was tentatively attributed to the influence of the lecithin polar group on the fluidity of fatty acyl chains near the polar group. Combined with other results from the literature, the coexistence of two environments could be associated with the coexistence of two conformational isomers of lecithin, differing in the orientation of the polar head group with respect to the plane of bilayer. These findings have been discussed in view of the present state of knowledge regarding temperature-induced changes in model membranes.
几种带有共价连接的5-二氧硬脂酸(2-(3-羧基癸基)-2-己基-4,4-二甲基-3-恶唑烷氧基)的自旋标记磷脂被插入饱和和不饱和卵磷脂脂质体中。通过自旋标记磷脂检测到的这些脂质体的温度诱导变化,与先前用不同探针和不同技术检测到的宿主卵磷脂烃链转变一致,这表明自旋标记磷脂是检测卵磷脂模型膜中温度诱导变化的灵敏探针。除了检测卵磷脂脂质体中已知的转变外,在特征转变温度以上还观察到两种明显不同环境的共存。这种现象初步归因于卵磷脂极性基团对极性基团附近脂肪酰链流动性的影响。结合文献中的其他结果,两种环境的共存可能与卵磷脂的两种构象异构体的共存有关,这两种异构体在极性头部基团相对于双层平面的取向上有所不同。鉴于目前关于模型膜中温度诱导变化的知识状态,对这些发现进行了讨论。