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From the Cover: Segregation of leading-edge and uropod components into specific lipid rafts during T cell polarization

机译:从封面开始:将前沿和uropod组件隔离为特定的 T细胞极化过程中的脂质筏

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摘要

Redistribution of specialized molecules in migrating cells develops asymmetry between two opposite cell poles, the leading edge and the uropod. We show that acquisition of a motile phenotype in T lymphocytes results in the asymmetric redistribution of ganglioside GM3- and GM1-enriched raft domains to the leading edge and to the uropod, respectively. This segregation to each cell pole parallels the specific redistribution of membrane proteins associated to each raft subfraction. Our data suggest that raft partitioning is a major determinant for protein redistribution in polarized T cells, as ectopic expression of raft-associated proteins results in their asymmetric redistribution, whereas non-raft-partitioned mutants of these proteins are distributed homogeneously in the polarized cell membrane. Both acquisition of a migratory phenotype and SDF-1α-induced chemotaxis are cholesterol depletion-sensitive. Finally, GM3 and GM1 raft redistribution requires an intact actin cytoskeleton, but is insensitive to microtubule disruption. We propose that membrane protein segregation not only between raft and nonraft domains but also between distinct raft subdomains may be an organizational principle that mediates redistribution of specialized molecules needed for T cell migration.
机译:专门分子在迁移细胞中的重新分布会在两个相对的细胞极,前缘和尾足之间形成不对称性。我们显示,在T淋巴细胞中获得运动型表型的获得分别导致神经节苷脂GM3和富含GM1的筏域的不对称再分布到前缘和尾足。这种对每个细胞极的分离平行于与每个筏子组分相关的膜蛋白的特定再分布。我们的数据表明,筏分配是极化T细胞中蛋白质重新分布的主要决定因素,因为筏相关蛋白的异位表达导致它们的不对称重新分布,而这些蛋白的非筏分配突变体均匀分布在极化细胞膜中。迁移表型的获得和SDF-1α诱导的趋化性都是胆固醇消耗敏感的。最后,GM3和GM1筏重新分配需要完整的肌动蛋白细胞骨架,但对微管破坏不敏感。我们建议膜蛋白的分离不仅在筏域和非筏域之间,而且在 不同的筏子域可能是一种组织原则, 介导T细胞所需的专门分子的重新分布 移民。

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