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Selective membrane exclusion in phagocytic and macropinocytic cups

机译:吞噬杯和大球泡杯中的选择性膜排除

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Specialized eukaryotic cells can ingest large particles and sequester them within membrane-delimited phagosomes. Many studies have described the delivery of lysosomal proteins to the phagosome, but little is known about membrane sorting during the early stages of phagosome formation. Here we used Dictyostelium discoideum amoebae to analyze the membrane composition of newly formed phagosomes. The membrane delimiting the closing phagocytic cup was essentially derived from the plasma membrane, but a subgroup of proteins was specifically excluded. Interestingly the same phenomenon was observed during the formation of macropinosomes, suggesting that the same sorting mechanisms are at play during phagocytosis and macropinocytosis. Analysis of mutant strains revealed that clathrin-associated adaptor complexes AP-1, -2 and -3 were not necessary for this selective exclusion and, accordingly, ultrastructural analysis revealed no evidence for vesicular transport around phagocytic cups. Our results suggest the existence of a new, as yet uncharacterized, sorting mechanism in phagocytic and macropinocytic cups.
机译:专门的真核细胞可以摄取大颗粒并将其隔离在膜定界的吞噬体内。许多研究已经描述了溶酶体蛋白向吞噬体的递送,但是对吞噬体形成早期阶段的膜分选知之甚少。在这里,我们使用了变形双歧杆菌,以分析新形成的吞噬体的膜组成。限定封闭的吞噬杯的膜基本上源自质膜,但明确排除了蛋白质的亚组。有趣的是,在巨胞体形成过程中观察到了相同的现象,这表明在吞噬作用和巨胞饮作用期间相同的分类机制也起作用。突变菌株的分析表明,网格蛋白相关的衔接子复合物AP-1,-2和-3对于这种选择性排除是不必要的,因此,超微结构分析没有证据表明吞噬杯周围有囊泡转运。我们的结果表明,在吞噬杯和大胞游杯中存在一种新的但尚未表征的分选机制。

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