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脂蛋白的重构。II. 二肉豆蔻酰卵磷脂与二肉豆蔻酰卵磷脂:胆固醇囊泡以及纯化的载脂蛋白C-I和C-III2之间的脂-蛋白相互作用:通过异构自旋标记卵磷脂进行研究

Reconstitution of lipoproteins. II. Lipid-protein interaction between dimyristoyl-lecithin and dimyristoyl-lecithin:cholesterol vesicles and purified apolipoprotein C-I and C-III2 studied by isomeric spin-labelled lecithins.

作者信息

Vaughan D J, Breckenridge W C, Stanacev N Z

出版信息

Can J Biochem. 1980 Jul;58(7):592-8. doi: 10.1139/o80-081.

Abstract

The reconstitution of purified apolipoprotein C-I and C-III2 with sn-3-dimyristoyl-lecithin and sn-3-dimyristoyl-lecithin:cholesterol (10:1) vesicles was studied by electron spin resonance spectroscopy using isomeric 5'-, 12'-, and 16'-(N-oxyl-4",4"-dimethyloxazolidine)stearoyl spin-labelled lecithin probes. Results obtained from the temperature-induced changes of lipoprotein recombinants showed the hydrophilic nature of the lipid-protein interactions. The temperature-induced phospholipid phase transition, as measured by 5'-(N-oxyl-4",4"-dimethyloxazolidine)stearoyl spin-labelled lecithin probe in recombinants containing apoprotein C-1 or apoprotein C-iii2, is very broad and has a small cooperative unit indicative of extensive lipid-protein interactions occurring at the head group region of the phospholipid bilayer. When 12"- and 16'-(N-oxyl-4",4"-dimethyloxazolidine)stearoyl spin-labelled lecithins are used as probes in the same system, similar sharper and more cooperative lipid phase changes are detected. These results indicate a surface location for both apoprotein C-I and apoprotein C-III2 with respect to the phospholipid bilayer in lipoprotein recombinants with and without cholesterol.

摘要

利用异构的5'-、12'-和16'-(N-氧基-4",4"-二甲基恶唑烷)硬脂酰自旋标记卵磷脂探针,通过电子自旋共振光谱研究了纯化的载脂蛋白C-I和C-III2与sn-3-二肉豆蔻酰卵磷脂以及sn-3-二肉豆蔻酰卵磷脂:胆固醇(10:1)囊泡的重组情况。脂蛋白重组体温度诱导变化的结果显示了脂-蛋白相互作用的亲水性。在含有载脂蛋白C-1或载脂蛋白C-iii2的重组体中,用5'-(N-氧基-4",4"-二甲基恶唑烷)硬脂酰自旋标记卵磷脂探针测量的温度诱导磷脂相变非常宽,且具有小的协同单元,这表明在磷脂双层的头部基团区域发生了广泛的脂-蛋白相互作用。当在同一系统中使用12"-和16'-(N-氧基-4",4"-二甲基恶唑烷)硬脂酰自旋标记卵磷脂作为探针时,检测到类似但更尖锐且更具协同性的脂质相变。这些结果表明,在有或没有胆固醇的脂蛋白重组体中,载脂蛋白C-I和载脂蛋白C-III2相对于磷脂双层均位于表面。

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