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首页> 外文期刊>American Journal of Physiology >Role of plasmalemmal caveolae in signal transduction.
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Role of plasmalemmal caveolae in signal transduction.

机译:质膜小窝在信号转导中的作用。

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摘要

Caveolae are specialized plasmalemmal microdomains originally studied in numerous cell types for their involvement in the transcytosis of macromolecules. They are enriched in glycosphingolipids, cholesterol, sphingomyelin, and lipid-anchored membrane proteins, and they are characterized by a light buoyant density and resistance to solubilization by Triton X-100 at 4 degreesC. Once the identification of the marker protein caveolin made it possible to purify this specialized membrane domain, it was discovered that caveolae also contain a variety of signal transduction molecules. This includes G protein-coupled receptors, G proteins and adenylyl cyclase, molecules involved in the regulation of intracellular calcium homeostasis, and their effectors including the endothelial isoform of nitric oxide synthase, multiple components of the tyrosine kinase-mitogen-activated protein kinase pathway, and numerous lipid signaling molecules. More recent work has indicated that caveolae further serve to compartmentalize, modulate, and integrate signaling events at the cell surface. This specialized plasmalemmal domain warrants direct consideration in future investigations of both normal and pathological signal transduction in pulmonary cell types.
机译:小窝是最初在众多细胞类型中研究的专门化的质膜微区,因为它们参与了大分子的转胞吞作用。它们富含糖鞘脂,胆固醇,鞘磷脂和脂质锚定的膜蛋白,并且它们的特征是轻的浮力密度和Triton X-100在4摄氏度时对增溶的抵抗力。一旦鉴定出标记蛋白caveolin使得纯化该专门的膜结构域成为可能,就发现caveolae也包含多种信号转导分子。这包括G蛋白偶联受体,G蛋白和腺苷酸环化酶,参与细胞内钙稳态调节的分子及其效应物,包括一氧化氮合酶的内皮同工型,酪氨酸激酶-促分裂原激活的蛋白激酶途径的多种成分,和众多的脂质信号分子。最近的工作表明,小窝蛋白进一步在细胞表面用于分隔,调节和整合信号传导事件。这个特殊的血浆区域需要在未来对肺细胞类型的正常和病理信号转导的研究中直接考虑。

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