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High-resolution dissection of phagosome maturation reveals distinct membrane trafficking phases

机译:吞噬体成熟的高分辨率解剖揭示了不同的膜运输阶段

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Molecular mechanisms of endocytosis in the genetically and biochemically tractable professional phagocyte Dictyostelium discoideum reveal a striking degree of similarity to higher eukaryotic cells. Pulse-chase feeding with latex beads allowed purification of phagosomes at different stages of maturation. Gentle ATP stripping of an actin meshwork entrapping contaminating organelles resulted in a 10-fold increase in yield and purity, as confirmed by electron microscopy. Temporal profiling of signaling, cytoskeletal, and trafficking proteins resulted in a complex molecular fingerprint of phagosome biogenesis and maturation. First, nascent phagosomes were associated with coronin and rapidly received a lysosomal glycoprotein, LmpB. Second, at least two phases of delivery of lysosomal hydrolases (cathepsin D [CatD] and cysteine protease [CPp34]) were accompanied by removal of plasma membrane components (PM4C4 and biotinylated surface proteins). Third, a phase of late maturation, preparing for final exocytosis of undigested material, included quantitative recycling of hydrolases and association with vacuolin. Also, lysosomal glycoproteins of the Lmp family showed distinct trafficking kinetics. The delivery and recycling of CatD was directly visualized by confocal microscopy. This heavy membrane traffic of cargos was precisely accompanied by regulatory proteins such as the Rab7 GTPases and the endosomal SNAREs Vti1 and VAMP7 This initial molecular description of phagocytosis demonstrates the feasibility of a comprehensive analysis of phagosomal lipids and proteins in genetically modified strains. [References: 63]
机译:在遗传和生物化学上易处理的专业吞噬细胞盘基网柄菌的内吞作用的分子机制揭示了与高级真核细胞相似的惊人程度。用乳胶珠脉冲追踪喂养可以在成熟的不同阶段纯化吞噬体。电子显微镜证实,捕获污染细胞器的肌动蛋白网的温和ATP剥离使产量和纯度提高了10倍。信号转导,细胞骨架和运输蛋白的时间谱分析导致吞噬体生物发生和成熟的复杂分子指纹。首先,新生的吞噬体与冠蛋白相关,并迅速接受溶酶体糖蛋白LmpB。其次,溶酶体水解酶(组织蛋白酶D [CatD]和半胱氨酸蛋白酶[CPp34])的至少两个阶段的传递伴随着质膜成分(PM4C4和生物素化表面蛋白)的去除。第三,在后期成熟阶段,为未消化物质的最终胞吐做准备,包括定量水解水解酶和与空泡蛋白结合。此外,Lmp家族的溶酶体糖蛋白显示出明显的运输动力学。通过共聚焦显微镜可以直接看到CatD的输送和回收。货物的这种大量膜运输正好伴有调控蛋白,例如Rab7 GTPases和内体SNARE Vti1和VAMP7。这种对吞噬作用的初步分子描述证明了对转基因菌株中吞噬体脂质和蛋白质进行全面分析的可行性。 [参考:63]

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