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Steroid hormone-induced effects on membrane fluidity and their potential roles in non-genomic mechanisms.

机译:类固醇激素对膜流动性的影响及其在非基因组机制中的潜在作用。

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Steroid hormones are lipophilic suggesting they intercalate into the bilayer of target cell plasma membranes, potentially altering the fluidity and function of the membrane. The present study measured the effects of steroidal exposure on both phospholipid fluidity and integral protein mobility. Studies were performed on the effects of a variety of steroids on phosphatidylcholine liposomes, synaptosomal plasma membranes and sarcoplasmic reticulum membranes. Progesterone decreased the lipid fluidity, whereas testosterone had no effect on lipid movement. The estrogen, 17 beta-estradiol, an aromatised metabolite of testosterone, increased lipid mobility. In each case, the steroid action was concentration-dependent. The steroids all increased the activity of the Ca2+ ATPase of SR membrane, in keeping with their effects on this enzyme's aggregation state. The results suggest that, although lipid fluidity is a factor influencing protein activity, their mobility within the bilayer is the primary determinant of enzyme activity in the membrane for most proteins.
机译:类固醇激素具有亲脂性,表明它们插入目标细胞质膜的双层中,可能会改变其流动性和功能。本研究测量了类固醇暴露对磷脂流动性和整体蛋白质迁移率的影响。研究了多种类固醇对磷脂酰胆碱脂质体,突触体质膜和肌浆网膜的影响。孕酮降低脂质流动性,而睾丸激素对脂质运动没有影响。雌激素17β-雌二醇(一种睾丸激素的芳香化代谢产物)增加了脂质的流动性。在每种情况下,类固醇的作用都是浓度依赖性的。类固醇均增加了SR膜Ca2 + ATPase的活性,并与其对这种酶聚集状态的影响保持一致。结果表明,尽管脂质流动性是影响蛋白质活性的一个因素,但它们在双层中的移动性是大多数蛋白质膜中酶活性的主要决定因素。

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