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Species pattern of phosphatidylinositol from lung surfactant and a comparison of the species pattern of phosphatidylinositol and phosphatidylglycerol synthesized de novo in lung microsomal fractions

机译:肺表面活性物质中磷脂酰肌醇的种类特征及从头合成的磷脂酰肌醇和磷脂酰甘油的种类特征比较

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p1. Phosphatidylinositol (PI) is a minor component of lung surfactant which may be able to replace the functionally important phosphatidylglycerol (PG) [Beppu, Clements & Goerke (1983) J. Appl. Physiol. 55, 496-502] without disturbing lung function. The dipalmitoyl species is one of the main species for both PI (14.4%) and PG (16.9%). Besides the C16:0--C16:0 species, the C16:0--C18:0, C16:0--C18:1, C16:0--C18:2 and C18:0--C18:1 species showed comparable proportions in the PG and PI fractions. These similarities of the species patterns and the acidic character of both phospholipids could explain why surfactant PG may be replaced by PI. 2. PI and PG were radiolabelled by incubation of microsomal fractions with [14C]glycerol 3-phosphate (Gro3P). For 11 out of 14 molecular species of PI and PG we measured comparable proportions of radioactivity. The radioactivity of these 11 species accounted together for more than 80% of the total. The addition of inositol to the incubation system decreased the incorporation in vitro of Gro3P into PG and CDP-DG (diacylglycerol) of lung microsomes (microsomal fractions), but did not change the distribution of radioactivity among the molecular species of PG. These results supported the idea that both acidic surfactant phospholipids may be synthesized de novo from a common CDP-DG pool in lung microsomes./p
机译:> 1。磷脂酰肌醇(PI)是肺表面活性剂的次要成分,它可以代替功能上重要的磷脂酰甘油(PG)[Beppu,Clements& A. Goerke(1983)J.Appl。生理学。 55,496-502]。二棕榈酰物质是PI(14.4%)和PG(16.9%)的主要物种之一。除了C16:0--C16:0种类外,还显示了C16:0--C18:0,C16:0--C18:1,C16:0--C18:2和C18:0--C18:1种类PG和PI馏分中的比例相当。两种磷脂的物种模式和酸性特征的这些相似性可以解释为什么表面活性剂PG可以被PI取代。 2.通过将微粒体级分与[14C] 3-磷酸甘油(Gro3P)一起孵育来放射性标记PI和PG。对于PI和PG的14种分子中的11种,我们测量了相当比例的放射性。这11个物种的放射性合计占总数的80%以上。向培养系统中添加肌醇减少了Gro3P体外掺入肺微粒体(微粒体级分)的PG和CDP-DG(二酰甘油)中,但没有改变PG分子间放射性的分布。这些结果支持了两种酸性表面活性剂磷脂可以从肺微粒体中常见的CDP-DG库重新合成的想法。

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