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首页> 外文期刊>The journal of immunology >Role of Lipid Fatty Acyl Composition and Membrane Fluidity in the Resistance of Acholeplasma Laidlawii to Complement-Mediated Killing
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Role of Lipid Fatty Acyl Composition and Membrane Fluidity in the Resistance of Acholeplasma Laidlawii to Complement-Mediated Killing

机译:脂脂肪酰基组成和膜流动性在Laidlawii霍乱对补体介导的杀伤力的抗性中的作用

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摘要

Acholeplasma laidlawii wild type and a mutant strain, com r- 328 , characterized by its resistance to complement-mediated killing, were examined for the effects of variations in their lipid fatty acyl moieties on membrane fluidity and the susceptibility of the cells to lysis by complement. Both cell types were cultured in media containing stearate, palmitate, or an equimolar mixture of palmitate and oleate. When stearate or palmitate served as the major membrane fatty acyl constituent, the sensitivity of the cells to complement-mediated killing via both the classical complement pathway and reactive lysis was increased, whereas the fluidity of the respective cell membranes was decreased. By comparison, when oleate was a major membrane fatty acyl moiety along with palmitate, the cell's sensitivity to complement-mediated killing decreased, whereas membrane fluidity increased. This pattern was observed for both strains although it was more pronounced in the wild-type strain than in com r- 328 . Although there appears to be a correlation between membrane fatty acyl composition, membrane fluidity, and complement-mediated killing in A. laidlawii , this correlation is obscure since the presence of cholesterol in the membrane, although affecting membrane fluidity, apparently does not alter the response of wild-type cells to lysis via the classical pathway.
机译:检查了无窝霍乱血浆野生型和突变菌株com-328,其特征是其对补体介导的杀伤具有抗性,研究了其脂质脂酰部分的变化对膜流动性和细胞对补体裂解敏感性的影响。 。两种细胞类型均在含有硬脂酸酯,棕榈酸酯或棕榈酸酯和油酸酯的等摩尔混合物的培养基中培养。当硬脂酸酯或棕榈酸酯用作主要的膜脂肪酰基成分时,细胞对通过经典补体途径和反应性裂解的补体介导的杀伤的敏感性增加,而各个细胞膜的流动性降低。相比之下,当油酸酯与棕榈酸酯一起是主要的膜脂肪酰基部分时,细胞对补体介导的杀伤的敏感性降低,而膜流动性增加。两种菌株均观察到该模式,尽管在野生型菌株中比在comr-328中更明显。尽管膜脂肪酰基组成,膜流动性和拟南芥中的补体介导的杀伤之间似乎存在相关性,但是这种相关性是模糊的,因为膜中胆固醇的存在虽然影响膜的流动性,但显然不会改变反应野生型细胞通过经典途径裂解。

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