首页> 外文OA文献 >ASSEMBLY OF LIPIDS INTO MEMBRANES IN ACANTHAMOEBA PALESTINENSIS : I. Observations on the Specificity and Stability of Choline-14C and Glycerol-3H as Labels for Membrane Phospholipids
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ASSEMBLY OF LIPIDS INTO MEMBRANES IN ACANTHAMOEBA PALESTINENSIS : I. Observations on the Specificity and Stability of Choline-14C and Glycerol-3H as Labels for Membrane Phospholipids

机译:脂类化合物在巴勒斯坦棘阿米巴膜中的组装:I.胆碱14C和甘油3H作为膜磷脂标记的特异性和稳定性的观察

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摘要

In order to determine the feasibility of using radioactive precursors as markers for membrane phospholipids in Acanthamoeba palestinensis, the characteristics of phospholipids labeled with choline-14C and glycerol-3H were examined. Choline-14C was found to be a specific label for phosphatidyl choline. There was a turnover of the radioactive moiety of phosphatidyl choline at a rate that varied with the concentration of nonradioactive choline added to the growth medium. Radioactivity was lost from labeled phosphatidyl choline into the acid-soluble intracellular pool and from the pool into the extracellular medium. This loss of radioactivity from cells leveled off and an equilibrium was reached between the label in the cells and in the medium. Radioactive choline was incorporated into phosphatidyl choline by cell-free microsomal suspensions. This incorporation leveled off with the attainment of an equilibrium between the choline-14C in the reaction mixture and the choline-14C moiety of phosphatidyl choline in the microsomal membranes. Therefore, a choline exchange reaction may occur in cell-free membranes, as well as living A. palestinensis. In contrast to choline-14C, the apparent turnover of glycerol-3H-labeled phospholipids was not affected by large concentrations of nonradioactive choline or glycerol in the medium. The radioactivity in lipids labeled with glycerol-3H consisted of 33% neutral lipids and 67% phospholipids. Phospholipids labeled with glycerol-3H turned over slowly, with a concomitant increase in the percentage of label in neutral lipids, indicating a conversion of phospholipids to neutral lipids. Because most (∼96%) of the glycerol-3H recovered from microsomal membranes was in phospholipids, whereas only a minor component (∼2%) of the glycerol-3H was in the phospholipids isolated from nonmembrane lipids, glycerol-3H was judged to be a specific marker for membrane phospholipids.
机译:为了确定使用放射性前体作为苍白棘阿米巴中膜磷脂标记的可行性,检查了用胆碱14C和甘油3H标记的磷脂的特征。发现胆碱-14C是磷脂酰胆碱的特异性标记。磷脂酰胆碱的放射性部分的周转率随添加到生长培养基中的非放射性胆碱的浓度而变化。放射性从标记的磷脂酰胆碱损失到酸溶性细胞内池中,并从该池损失到细胞外培养基中。来自细胞的这种放射性损失趋于平稳,并且在细胞和培养基中的标记之间达到了平衡。通过无细胞微粒体悬浮液将放射性胆碱掺入磷脂酰胆碱中。随着在反应混合物中的胆碱-14C和微粒体膜中的磷脂酰胆碱的胆碱-14C部分之间达到平衡,这种掺入趋于平稳。因此,胆碱交换反应可能会发生在无细胞的膜,以及活的A. palestinensis。与胆碱14C相反,培养基中高浓度的非放射性胆碱或甘油不会影响甘油3H标记的磷脂的表观转换。用甘油3H标记的脂质中的放射性由33%的中性脂质和67%的磷脂组成。用甘油3H标记的磷脂缓慢翻转,伴随着中性脂质中标记的百分比增加,表明磷脂转化为中性脂质。因为从微粒体膜中回收的甘油3H的大部分(约96%)是在磷脂中,而从非膜脂质分离出的磷脂中甘油3H的只有一小部分(约2%),所以甘油3H被认为是是膜磷脂的特异性标记。

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