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首页> 外文期刊>Frontiers in Immunology >Myosin 1g Contributes to CD44 Adhesion Protein and Lipid Rafts Recycling and Controls CD44 Capping and Cell Migration in B Lymphocytes
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Myosin 1g Contributes to CD44 Adhesion Protein and Lipid Rafts Recycling and Controls CD44 Capping and Cell Migration in B Lymphocytes

机译:肌球蛋白1G有助于CD44粘附蛋白和脂质筏再循环和对照B淋巴细胞中的CD44封端和细胞迁移

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Cell migration and adhesion are critical for immune system function and involve many proteins, which must be continuously transported and recycled in the cell. Recycling of adhesion molecules requires the participation of several proteins, including actin, tubulin, and GTPases, and of membrane components such as sphingolipids and cholesterol. However, roles of actin motor proteins in adhesion molecule recycling are poorly understood. In this study, we identified myosin 1g as one of the important motor proteins that drives recycling of the adhesion protein CD44 in B lymphocytes. We demonstrate that the lack of Myo1g decreases the cell-surface levels of CD44 and of the lipid raft surrogate GM1. In cells depleted of Myo1g, the recycling of CD44 was delayed, the delay seems to be caused at the level of formation of recycling complex and entry into recycling endosomes. Moreover, a defective lipid raft recycling in Myo1g-deficient cells had an impact both on the capping of CD44 and on cell migration. Both processes required the transportation of lipid rafts to the cell surface to deliver signaling components. Furthermore, the extramembrane was essential for cell expansion and remodeling of the plasma membrane topology. Therefore, Myo1g is important during the recycling of lipid rafts to the membrane and to the accompanied proteins that regulate plasma membrane plasticity. Thus, Myosin 1g contributes to cell adhesion and cell migration through CD44 recycling in B lymphocytes.
机译:细胞迁移和粘附对免疫系统功能至关重要,并且涉及许多蛋白质,其必须连续运输和再循环在细胞中。粘附分子的再循环需要几种蛋白质的参与,包括肌动蛋白,管蛋白和GTP酶,以及膜组分如鞘脂和胆固醇。然而,肌动蛋白电机蛋白在粘附分子回收中的作用是较差的。在这项研究中,我们将肌球蛋白1G鉴定为推动B淋巴细胞中粘附蛋白CD44的粘附蛋白CD44的重要电机蛋白之一。我们证明缺乏MyO1G降低CD44和脂质筏代理GM1的细胞表面水平。在MyO1G耗尽的细胞中,CD44的再循环被延迟,延迟似乎是在再循环复合物的形成水平和进入回收内体的水平。此外,在MyO1G缺陷细胞中回收缺陷的脂质筏再循环对CD44的封顶和细胞迁移均产生影响。这两种过程都需要将脂质筏的运输到电池表面以提供信号传导组分。此外,胶质内膜对于细胞膨胀和质膜拓扑的重塑至关重要。因此,MyO1G在将脂质筏再循环到膜和调节质膜塑性的伴随蛋白质期间是重要的。因此,肌球蛋白1G通过在B淋巴细胞中的CD44回收来有助于细胞粘附和细胞迁移。

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