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Lipid rafts and regulation of the cytoskeleton during T cell activation

机译:T细胞活化过程中的脂质筏和细胞骨架的调节

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摘要

The ability of polarized cells to initiate and sustain directional responses to extracellular signals is critically dependent on direct communication between spatially organized signalling modules in the membrane and the underlying cytoskeleton. Pioneering work in T cells has shown that the assembly of signalling modules critically depends on the functional compartmentalization of membrane lipids into ordered microdomains or lipid rafts. The significance of rafts in T cell activation lies not only in their ability to recruit the signalling partners that eventually assemble into a mature immunological synapse but also in their ability to regulate actin dynamics and recruit cytoskeletal associated proteins, thereby achieving the structural polarization underlying stability of the synapse-a critical prerequisite for activation to be sustained. Lipid rafts vary quite considerably in size and visualizing the smallest of them in vivo has been challenging. Nonetheless it is now been shown quite convincingly that a surprisingly large proportion-in the order of 50%-of external membrane lipids (chiefly cholesterol and glycosphingolipids) can be dynamically localized in these liquid ordered rafts. Complementary inner leaflet rafts are less well characterized, but contain phosphoinositides as an important functional component that is crucial for regulating the behaviour of the actin cytoskeleton. This paper provides an overview of the interdependency between signalling and cytoskeletal polarization, and in particular considers how regulation of the cytoskeleton plays a crucial role in the consolidation of rafts and their stabilization into the immunological synapse.
机译:极化细胞启动和维持对细胞外信号的定向反应的能力主要取决于膜中空间组织的信号传导模块与基础细胞骨架之间的直接通讯。 T细胞的开拓性工作已经表明,信号模块的组装关键取决于膜脂质向有序的微区或脂质筏的功能区室化。筏在T细胞活化中的意义不仅在于其募集最终组装成成熟的免疫突触的信号传导伙伴的能力,而且在于其调节肌动蛋白动力学和募集细胞骨架相关蛋白的能力,从而实现潜在的结构极化。突触是维持激活的关键先决条件。脂质筏的尺寸变化很大,在体内可视化最小的脂质筏一直是一个挑战。尽管如此,现在已经非常令人信服地表明,可以动态地在这些液体有序筏中动态地定位出惊人比例的外膜脂质(主要是胆固醇和鞘糖脂),约为50%。互补的内部小叶筏的特征较差,但含有磷酸肌醇作为重要的功能性成分,对调节肌动蛋白细胞骨架的行为至关重要。本文概述了信号转导和细胞骨架极化之间的相互依赖性,并特别考虑了细胞骨架的调节如何在筏的巩固及其在免疫突触中的稳定化中起关键作用。

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