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首页> 外文期刊>Journal of cell biology >A novel in vitro assay reveals SNARE topology and the role of Ykt6 in autophagosome fusion with vacuoles
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A novel in vitro assay reveals SNARE topology and the role of Ykt6 in autophagosome fusion with vacuoles

机译:一种新颖的体外测定揭示了网罗拓扑结构和Ykt6在与空泡自噬融合中的作用

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Autophagy is a catabolic pathway that delivers intracellular material to the mammalian lysosomes or the yeast and plant vacuoles. The final step in this process is the fusion of autophagosomes with vacuoles, which requires SNARE proteins, the homotypic vacuole fusion and protein sorting tethering complex, the RAB7-like Ypt7 GTPase, and its guanine nucleotide exchange factor, Mon1-Ccz1. Where these different components are located and function during fusion, however, remains to be fully understood. Here, we present a novel in vitro assay to monitor fusion of intact and functional autophagosomes with vacuoles. This process requires ATP, physiological temperature, and the entire fusion machinery to tether and fuse autophagosomes with vacuoles. Importantly, we uncover Ykt6 as the autophagosomal SNARE. Our assay and findings thus provide the tools to dissect autophagosome completion and fusion in a test tube.
机译:自噬是一种分解代谢途径,可将细胞内物质传递至哺乳动物的溶酶体或酵母和植物的液泡。此过程的最后一步是自噬体与液泡的融合,这需要SNARE蛋白,同型液泡融合和蛋白分选栓系复合物,RAB7样的Ypt7 GTPase及其鸟嘌呤核苷酸交换因子Mon1-Ccz1。但是,这些不同的组件在融合中所处的位置和功能尚待充分了解。在这里,我们提出了一种新颖的体外测定法,以监测完整和功能性自噬体与液泡的融合。此过程需要ATP,生理温度和整个融合机制来束缚和融合自噬体与液泡。重要的是,我们发现Ykt6是自噬吞噬网罗。因此,我们的测定和发现提供了在试管中解剖自噬体完成和融合的工具。

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