Fraser P E, Rand R P, Deber C M
Research Institute, Hospital for Sick Children, Ontario, Canada.
Biochim Biophys Acta. 1989 Jul 24;983(1):23-9. doi: 10.1016/0005-2736(89)90375-1.
31P-NMR and X-ray diffraction techniques are used to study the comparative ability of myelin basic protein (MBP) vs. other basic proteins to convert hexagonal (HII) phases to stable lamellar (L alpha) structures. Pure dioleoylphosphatidylethanolamine (DOPE) at pH 9 and 7, and mixtures of DOPE/phosphatidylserine (PS) (95:5 and 80:20% w/w) at pH 7 were employed for this investigation. The polymorphic behavior of the lipid suspensions was evaluated in the presence and absence of several basic proteins (MBP, calf thymus histone, lysozyme, melittin) and the cationic polypeptide, polylysine (PL). Each of the proteins and PL was capable of binding the pure DOPE HII phase at pH 9 but with varying morphological consequences, i.e., lamellar stabilization (MBP, histone, PL), formation of new protein-DOPE HII phases (lysozyme) or lipid disordering/vesiculation (melittin). Reduction to pH 7 resulted in the dissociation of protein from DOPE - with the exception of melittin - and the reformation of a pure lipid HII phase. Additions of PS to DOPE at pH 7 facilitated protein binding, but among the proteins examined, only MBP was capable of converting the lipid suspension into a stable multilamellar form. Differences in the lipid morphology produced by each protein are discussed in terms of protein physicochemical characteristics. In addition, a possible relationship between MBP-lipid interactions and the stability of myelin sheath lipid multilayers is inferred from the significant bilayer-stabilizing capacity of MBP.
采用31P核磁共振和X射线衍射技术研究髓鞘碱性蛋白(MBP)与其他碱性蛋白相比,将六方(HII)相转变为稳定层状(Lα)结构的能力。本研究采用pH值为9和7的纯二油酰磷脂酰乙醇胺(DOPE),以及pH值为7的DOPE/磷脂酰丝氨酸(PS)混合物(95:5和80:20% w/w)。在存在和不存在几种碱性蛋白(MBP、小牛胸腺组蛋白、溶菌酶、蜂毒肽)和阳离子多肽聚赖氨酸(PL)的情况下,评估脂质悬浮液的多晶型行为。每种蛋白质和PL都能够在pH值为9时结合纯DOPE HII相,但会产生不同的形态学结果,即层状稳定(MBP、组蛋白、PL)、形成新的蛋白质-DOPE HII相(溶菌酶)或脂质无序/形成囊泡(蜂毒肽)。将pH值降至7会导致除蜂毒肽外的蛋白质与DOPE解离,并重新形成纯脂质HII相。在pH值为7时向DOPE中添加PS有助于蛋白质结合,但在所检测的蛋白质中,只有MBP能够将脂质悬浮液转化为稳定的多层形式。根据蛋白质的物理化学特性讨论了每种蛋白质产生的脂质形态差异。此外,从MBP显著的双层稳定能力推断出MBP-脂质相互作用与髓鞘脂质多层稳定性之间可能存在的关系。