Greenhut S F, Bourgeois V R, Roseman M A
J Biol Chem. 1986 Mar 15;261(8):3670-5.
Cytochrome b5 is an amphipathic integral membrane protein that spontaneously inserts, post-translationally, into intracellular membranes. When added to preformed phospholipid vesicles, it binds in a so-called "loose" or transferable configuration, characterized by the ability of the protein to rapidly equilibrate between vesicles. In a preliminary report we showed that the distribution of cytochrome b5 among a heterogeneous population of small sonicated phosphatidylcholine vesicles (212 to about 350 A in diameter) lies in favor of the smallest vesicles by a factor of at least 20 (Greenhut, S.F. and Roseman, M.A. (1985) J. Biol. Chem. 260, 5883-5886). In the present studies we have attempted to determine the maximal extent to which bilayer curvature can influence the intervesicle distribution of cytochrome b5, by measuring the distribution of the protein between a population of limit-size vesicles 212 A in diameter and a population of large unilamellar vesicles approximately 1000 A in diameter. (The effect of bilayer curvature on the physical properties of the lipids in the large vesicles is considered to be negligible.) The results show that cytochrome b5 favors the small vesicle population by a factor of about 200. This observation suggests that the formation of highly curved regions in biological membranes (or the formation of regions in which the physical state of the lipids is similar to that in small vesicles) may cause the accumulation of certain membrane proteins at those sites. We also observed that a significant fraction (11-20%) of the cytochrome b5, when added directly to the large vesicles, spontaneously inserts into the "tight," physiologically proper configuration. A possible mechanism is discussed.
细胞色素b5是一种两亲性整合膜蛋白,在翻译后能自发插入细胞内膜。当添加到预先形成的磷脂囊泡中时,它以所谓的“松散”或可转移构型结合,其特征是蛋白质能够在囊泡之间快速平衡。在一份初步报告中,我们表明细胞色素b5在异质的小超声处理的磷脂酰胆碱囊泡群体(直径212至约350埃)中的分布有利于最小的囊泡,其比例至少为20倍(格林胡特,S.F.和罗斯曼,M.A.(1985年)《生物化学杂志》260,5883 - 5886)。在本研究中,我们试图通过测量蛋白质在直径为212埃的极限尺寸囊泡群体和直径约为1000埃的大单层囊泡群体之间的分布,来确定双层曲率能够影响细胞色素b5囊泡间分布的最大程度。(双层曲率对大囊泡中脂质物理性质的影响被认为可以忽略不计。)结果表明,细胞色素b5有利于小囊泡群体,比例约为200倍。这一观察结果表明,生物膜中高度弯曲区域的形成(或脂质物理状态与小囊泡中相似的区域的形成)可能导致某些膜蛋白在这些位点积累。我们还观察到,当直接添加到大型囊泡中时,相当一部分(11 - 20%)的细胞色素b5会自发插入“紧密”的、生理上合适的构型。文中讨论了一种可能的机制。