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A Rab11-containing rapidly recycling compartment in macrophages that promotes phagocytosis

机译:巨噬细胞中含有Rab11的快速回收区,可促进吞噬作用

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Macrophages are specialized cells of the immune system that exhibit a prodigious capacity for phagocytosis. The ability of macrophages to internalize a substantial proportion of their plasma membrane during phagocytosis indicates that they possess a mechanism for the rapid renewal of plasma membrane. We examined the role of endocytic membrane recycling in promoting phagocytosis. In contrast to many other cell types, macrophages lack a morphologically distinct peri-centriolar recycling compart- ment but instead demonstrate an extensive network of transferrin receptor-positive tubules and vesicles that participated in recy- cIing. The rate of transferrin recycling in thioglycollate-elicited murine peritoneal macrophages (thio-macrophages) was exceed- ingly rapid, with exocytic rate constants that were 2- to 3-fold higher than those of most other cells. Because the GTPase Rab11 has been implicated in transferrin recycling in other cells, we determined its role in transferrin recycling and phagocytosis in macrophages. Macrophages expressing epitope-tagged Rab11 demonstrated the presence of Rab11 in several intracellular mem- brane compartments, including endosomes and nascent phago- somes. Expression of Rab11 25N, a GTP binding-deficient allele of Rab11, led to a decreased rate of transferrin efflux and impaired Fc.R-mediated phagocytosis, where Fc.R is the receptor for the Fc portion of IgG. In contrast, expression of Rab11 70L. a GTPase- deficient allele of Rab11, led to an increased rate of transferrin efflux and enhanced phagocytosis. We conclude that macrophages have adapted a rapidly mobilizable, endocytic compartment to enhance phagocytosis. Rab11 participates in the recruitment of this compartment to the macrophage cell surface.
机译:巨噬细胞是免疫系统的特化细胞,具有惊人的吞噬能力。巨噬细胞吞噬作用期间内化其大部分质膜的能力表明,它们具有快速更新质膜的机制。我们检查了内吞膜回收在促进吞噬作用中的作用。与许多其他细胞类型相反,巨噬细胞缺乏形态学上独特的周向中央再循环室,而是展示了参与回收的转铁蛋白受体阳性小管和囊泡的广泛网络。巯基乙酸盐诱导的鼠腹膜巨噬细胞(硫代巨噬细胞)中运铁蛋白的再循环速率非常快,其胞外速率常数比大多数其他细胞高2至3倍。由于GTPa​​se Rab11与其他细胞中的转铁蛋白回收有关,因此我们确定了它在巨噬细胞中的转铁蛋白回收和吞噬作用中的作用。表达表位标记的Rab11的巨噬细胞表明Rab11存在于多个细胞内膜区室中,包括内体和新生的吞噬体。 Rab11 25N(Rab11的GTP结合缺陷型等位基因)的表达导致运铁蛋白外排率降低和Fc.R介导的吞噬功能受损,其中Fc.R是IgG Fc部分的受体。相反,Rab11 70L的表达。 Rab11的GTP酶缺陷等位基因导致转铁蛋白外排率增加和吞噬作用增强。我们得出的结论是,巨噬细胞已经适应了一个快速可动员的内吞室,以增强吞噬作用。 Rab11参与该小室向巨噬细胞表面的募集。

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