Brown F R, Karthigasan J, Singh I, Kirschner D A
Department of Pediatrics, Medical University of South Carolina, Charleston.
J Neurosci Res. 1989 Oct;24(2):192-200. doi: 10.1002/jnr.490240210.
To examine the proposal that myelin proteolipid protein underlies the adhesion of neighboring membranes in central nervous system (CNS) myelin, we carried out X-ray diffraction studies on the structure and interactions of model bilayers composed of total myelin lipids plus proteolipid apoprotein (PLP). Total myelin lipids were used because their heterogeneity was expected to provide an appropriate environment for the integral membrane protein to achieve its native conformation and establish appropriate contacts with the apposed bilayer. We found that incorporation of PLP into myelin lipid bilayers, whether organized into multilamellar vesicles or oriented multilayers, did not appreciably affect the lamellar period, which ranged from 65-71 A. In oriented multilayers, the wide-angle spacing at approximately 4.8 A, which arises from the lateral packing of lipid chains and is perpendicular to the lamellar diffraction, was less oriented and weaker in bilayers containing the protein. These results indicate that PLP was incorporated into the bilayers and had a disordering effect on the hydrocarbon chains but did not extend into the spaces between bilayers. Bilayer profiles calculated from the lamellar diffraction to about 15 A spacing did not show any major changes in the distribution of electron density, suggesting that to moderate resolution, the protein was distributed uniformly across the width of the lipid bilayer. Periodicities measured from osmotically stressed multilamellar vesicles did not depend on the presence of PLP, indicating that the protein did not form stabilizing contacts between bilayers.(ABSTRACT TRUNCATED AT 250 WORDS)
为了检验髓鞘蛋白脂蛋白是中枢神经系统(CNS)髓鞘中相邻膜黏附基础这一假说,我们对由总髓鞘脂质加蛋白脂蛋白(PLP)组成的模型双层膜的结构和相互作用进行了X射线衍射研究。使用总髓鞘脂质是因为其异质性有望为整合膜蛋白提供合适的环境,使其达到天然构象并与相对的双层膜建立适当的接触。我们发现,将PLP掺入髓鞘脂质双层膜中,无论其组装成多层囊泡还是定向多层膜,都不会明显影响层间距,层间距范围为65 - 71埃。在定向多层膜中,大约4.8埃处的广角间距源于脂质链的侧向堆积且垂直于层状衍射,在含有该蛋白的双层膜中其取向性较差且强度较弱。这些结果表明PLP被掺入双层膜中,对烃链有紊乱作用,但不会延伸到双层膜之间的空间。从层状衍射计算到约15埃间距的双层膜轮廓在电子密度分布上未显示出任何重大变化,这表明在中等分辨率下,该蛋白在脂质双层膜的宽度上均匀分布。从渗透压应激的多层囊泡测量的周期性不依赖于PLP的存在,表明该蛋白不会在双层膜之间形成稳定接触。(摘要截短于250字)