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用磷脂酶D和C对与豚鼠肝微粒体膜结合的放射性异构自旋标记脂质进行选择性降解。

Selective degradation with phospholipases D and C of radioactive isomeric spin-labelled lipids bound to guinea pig liver microsomal membranes.

作者信息

Stuhne-Sekalec L, Stanacev N Z

出版信息

Can J Biochem. 1978 Oct;56(10):943-51. doi: 10.1139/o78-147.

Abstract

Membrane-bound lipids of isolated guinea pig liver microsomal membranes were selectively enzymatically labelled with isomeric (5-, 12-, and 16-)doxyl stearic acid. After reisolation, the membranes were degraded with phospholipases D and C under conditions not requiring detergents or organic solvent activators. The degradation of membrane-bound lipids occurred according to the recognized specificity of phospholipases D and C. Temperature-induced changes of degraded membranes containing radioactive spin-labelled isomeric lipids were followed by the electron spin resonance and spectral changes correlated with the lipid composition of membranes. Discontinuities in plots of experimental spectral parameters versus temperature detected in the case of microsomal membranes before and after degradation with phospholipases D and C were attributed to lipid-protein and lipid-lipid interaction(s). On the basis of these and control experiments, discontinuity at around 10-12 degrees C was attributed to the microsomal membrane phosphatidylcholine intrinsic microsomal membrane protein interaction(s), while discontinuities detected at 19-21 degrees C approximately and at 20-30 degrees C approximately were attributed to the phase separation of Ca or Zn salts of membranous phosphatidic acid and to the similar phenomenon involving membrane-bound diglycerides respectively.

摘要

用异构(5-、12-和16-)二氧硬脂酸对分离的豚鼠肝微粒体膜的膜结合脂质进行选择性酶标记。重新分离后,在不需要去污剂或有机溶剂激活剂的条件下,用磷脂酶D和C降解这些膜。膜结合脂质的降解按照磷脂酶D和C公认的特异性进行。通过电子自旋共振跟踪含有放射性自旋标记异构脂质的降解膜的温度诱导变化,并且光谱变化与膜的脂质组成相关。在用磷脂酶D和C降解之前和之后的微粒体膜的情况下,检测到的实验光谱参数与温度的关系图中的不连续性归因于脂质-蛋白质和脂质-脂质相互作用。基于这些实验和对照实验,10-12℃左右的不连续性归因于微粒体膜磷脂酰胆碱与微粒体膜固有蛋白质的相互作用,而分别在约19-21℃和约20-30℃检测到的不连续性归因于膜结合磷脂酸的钙盐或锌盐的相分离以及涉及膜结合甘油二酯的类似现象。

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