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Membrane domains and flagellar pocket boundaries are influenced by the cytoskeleton in African trypanosomes

机译:膜域和鞭毛袋边界受非洲锥虫细胞骨架的影响。

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摘要

A key feature of immune evasion for African trypanosomes is the functional specialization of their surface membrane in an invagina-tion known as the flagellar pocket (FP), the cell's sole site of endocytosis and exocytosis. The FP membrane is biochemically distinct yet continuous with those of the cell body and the flagellum. The structural features maintaining this individuality are not known, and we lack a clear understanding of how extracellular components gain access to the FP. Here, we have defined domains and boundaries on these surface membranes and identified their association with internal cytoskeletal features. The FP membrane appears largely homogeneous and uniformly involved in endocytosis. However, when endocytosis is blocked, receptor-mediated and fluid-phase endocytic markers accumulate specifically on membrane associated with four specialized microtubules in the FP region. These microtubules traverse a distinct boundary and associate with a channel that connects the FP lumen to the extracellular space, suggesting that the channel is the major transport route into the FP.
机译:非洲锥虫免疫逃避的一个关键特征是其表面膜的功能专一性称为鞭毛袋(FP),它是细胞内吞和胞吐的唯一部位。 FP膜在生化上是独特的,但与细胞体和鞭毛的膜连续。保持这种个性的结构特征尚不清楚,我们对细胞外成分如何获得FP缺乏清晰的了解。在这里,我们在这些表面膜上定义了域和边界,并确定了它们与内部细胞骨架特征的关联。 FP膜在很大程度上看来是均一的,并且均匀地参与胞吞作用。然而,当内吞作用被阻断时,受体介导的和液相的内吞标记物特异性地积聚在与FP区域中的四个特化微管相关的膜上。这些微管穿越一个独特的边界,并与将FP腔连接到细胞外空间的通道相关联,表明该通道是进入FP的主要运输途径。

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