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The dynamic phagosomal proteome and the contribution of the endoplasmic reticulum

机译:动态吞噬体蛋白质组和内质网的贡献

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Macrophages use phagocytosis to control the spread of pathogens in the body, to clear apoptotic cells, and to aid in tissue remodeling. The phagosomal membrane is traditionally thought to originate from the plasmalemma and then go through a series of maturation steps involving sequential fusion with endosomal compartments, leading to the formation of a phagolysosome. A recent model suggests that the endoplasmic reticulum (ER) is involved in the maturation as well. Here we use stable isotope labeling and multiple quantitative proteomic approaches to follow the dynamic composition of the maturing phagosome in RAW 264.7 macrophage cells to a greater depth and higher temporal resolution than was previously possible. Analysis of the results suggests that the traditional model of a linear sequence of fusion events with different compartments is more complex or variable than previously thought. By concomitantly measuring the degree to which each component is enriched on phagosomes, our data argue that the amount of ER involved in phagocytosis is much less than predicted by the model of ER-mediated phagocytosis.
机译:巨噬细胞利用吞噬作用控制病原体在体内的传播,清除凋亡细胞,并有助于组织重塑。传统上认为吞噬体膜起源于质膜,然后经历一系列成熟步骤,包括与内体区室的顺序融合,导致吞噬体的形成。最近的模型表明内质网(ER)也参与成熟。在这里,我们使用稳定的同位素标记和多种定量蛋白质组学方法来追踪RAW 264.7巨噬细胞中成熟吞噬体的动态组成,从而获得比以前更大的深度和更高的时间分辨率。结果分析表明,具有不同间隔的融合事件线性序列的传统模型比以前认为的更为复杂或可变。通过同时测量吞噬体中每种成分的富集程度,我们的数据认为,参与吞噬作用的ER量比ER介导的吞噬作用模型预测的少得多。

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