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Activation-Inactivation Cycling of Rab35 and ARF6 Is Required for Phagocytosis of Zymosan in RAW264 Macrophages

机译:Rab35和ARF6的激活-灭活循环是酵母菌在RAW264巨噬细胞中吞噬所必需的。

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摘要

Phagocytosis of zymosan by phagocytes is a widely used model of microbial recognition by the innate immune system. Live-cell imaging showed that fluorescent protein-fused Rab35 accumulated in the membranes of phagocytic cups and then dissociated from the membranes of newly formed phagosomes. By our novel pull-down assay for Rab35 activity, we found that Rab35 is deactivated immediately after zymosan internalization into the cells. Phagosome formation was inhibited in cells expressing the GDP- or GTP-locked Rab35 mutant. Moreover, the simultaneous expression of ACAP2-a Rab35 effector protein-with GTP-locked Rab35 or the expression of plasma membrane-targeted ACAP2 showed a marked inhibitory effect on phagocytosis through ARF6 inactivation by the GAP activity of ACAP2. ARF6, a substrate for ACAP2, was also localized on the phagocytic cups and dissociated from the membranes of internalized phagosomes. In support of the microscopic observations, ARF6-GTP pull-down experiments showed that ARF6 is transiently activated during phagosome formation. Furthermore, the expression of GDP- or GTP-locked ARF6 mutants also suppresses the uptake of zymosan. These data suggest that the activation-inactivation cycles of Rab35 and ARF6 are required for the uptake of zymosan and that ACAP2 is an important component that links Rab35/ARF6 signaling during phagocytosis of zymosan.
机译:吞噬细胞对酵母聚糖的吞噬作用是先天免疫系统对微生物识别的一种广泛使用的模型。活细胞成像显示,与荧光蛋白融合的Rab35在吞噬杯的膜中积累,然后从新形成的吞噬体的膜中解离。通过我们对Rab35活性的新型下拉测定法,我们发现Rab35在酵母聚糖内化进入细胞后立即失活。在表达GDP或GTP锁定的Rab35突变体的细胞中,吞噬体的形成受到抑制。此外,同时表达具有GTP锁定的Rab35的ACAP2-a Rab35效应蛋白或靶向质膜的ACAP2的表达通过ACAP2的GAP活性通过ARF6失活而对吞噬作用具有明显的抑制作用。 ARF6,ACAP2的底物,也定位在吞噬杯上,并从内吞噬菌体的膜上解离。为了支持显微镜观察,ARF6-GTP下拉实验表明ARF6在吞噬体形成过程中被瞬时激活。此外,GDP或GTP锁定的ARF6突变体的表达也抑制了酵母聚糖的摄取。这些数据表明Rab35和ARF6的激活-失活周期是摄取酵母聚糖所必需的,并且ACAP2是在酵母聚糖吞噬过程中连接Rab35 / ARF6信号传导的重要成分。

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