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首页> 外文期刊>Nature Communications >Membrane-cytoskeletal crosstalk mediated by myosin-I regulates adhesion turnover during phagocytosis
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Membrane-cytoskeletal crosstalk mediated by myosin-I regulates adhesion turnover during phagocytosis

机译:肌球蛋白-I介导的膜-细胞骨架串扰调节吞噬作用期间的粘附转换。

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摘要

Phagocytosis of invading pathogens or cellular debris requires a dramatic change in cell shape driven by actin polymerization. For antibody-covered targets, phagocytosis is thought to proceed through the sequential engagement of Fc-receptors on the phagocyte with antibodies on the target surface, leading to the extension and closure of the phagocytic cup around the target. We find that two actin-dependent molecular motors, class 1 myosins myosin 1e and myosin 1f, are specifically localized to Fc-receptor adhesions and required for efficient phagocytosis of antibody-opsonized targets. Using primary macrophages lacking both myosin 1e and myosin 1f, we find that without the actin-membrane linkage mediated by these myosins, the organization of individual adhesions is compromised, leading to excessive actin polymerization, slower adhesion turnover, and deficient phagocytic internalization. This work identifies a role for class 1 myosins in coordinated adhesion turnover during phagocytosis and supports a mechanism involving membrane-cytoskeletal crosstalk for phagocytic cup closure.
机译:侵袭性病原体或细胞碎片的吞噬作用需要肌动蛋白聚合驱动细胞形态发生巨大变化。对于被抗体覆盖的靶标,吞噬作用被认为是通过吞噬细胞上的Fc受体与靶标表面上的抗体的顺序接合而进行的,从而导致吞噬杯在靶标周围的延伸和闭合。我们发现,两个肌动蛋白依赖性分子马达,类1肌球蛋白肌球蛋白1e和肌球蛋白1f,被专门定位到Fc受体粘附和有效的吞噬抗体调理目标的必需。使用缺乏肌球蛋白1e和肌球蛋白1f的原代巨噬细胞,我们发现,如果没有这些肌球蛋白介导的肌动蛋白-膜连接,单个粘附的组织就会受到损害,从而导致肌动蛋白过度聚合,粘附转换更慢以及吞噬内在化不足。这项工作确定了1类肌球蛋白在吞噬过程中的协调粘附转换中的作用,并支持了涉及吞噬杯封闭的膜细胞骨架串扰的机制。

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