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Lipid trafficking by yeast Snx4 family SNX-BAR proteins promotes autophagy and vacuole membrane fusion

机译:酵母Snx4家族SNX-BAR蛋白的脂质运输促进自噬和液泡膜融合

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Cargo-selective and nonselective autophagy pathways employ a common core autophagy machinery that directs biogenesis of an autophagosome that eventually fuses with the lysosome to mediate turnover of macromolecules. In yeast (Saccharomyces cerevisiae) cells, several selective autophagy pathways fail in cells lacking the dimeric Snx4/Atg24 and Atg20/Snx42 sorting nexins containing a BAR domain (SNX-BARs), which function as coat proteins of endosome-derived retrograde transport carriers. It is unclear whether endosomal sorting by Snx4 proteins contributes to autophagy. Cells lacking Snx4 display a deficiency in starvation induced, nonselective autophagy that is severely exacerbated by ablation of mitochondrial phosphatidylethanolamine synthesis. Under these conditions, phosphatidylserine accumulates in the membranes of the endosome and vacuole, autophagy intermediates accumulate within the cytoplasm, and homotypic vacuole fusion is impaired. The Snx4-Atg20 dimer displays preference for binding and remodeling of phosphatidylserine-containing membrane in vitro, suggesting that Snx4-Atg20-coated carriers export phosphatidylserine-rich membrane from the endosome. Autophagy and vacuole fusion are restored by increasing phosphatidylethanolamine biosynthesis via alternative pathways, indicating that retrograde sorting by the Snx4 family sorting nexins maintains glycerophospholipid homeostasis required for autophagy and fusion competence of the vacuole membrane.
机译:货物选择性和非选择性自噬途径采用共同的核心自噬机制,该机制指导自噬体的生物发生,该生物体最终与溶酶体融合以介导大分子的更新。在酵母(Saccharomyces cerevisiae)细胞中,缺少缺乏含有BAR结构域(SNX-BARs)的二聚体Snx4 / Atg24和Atg20 / Snx42分选神经素的细胞中,几种选择性自噬途径会失败,这些蛋白可用作内体来源的逆行转运载体的外壳蛋白。目前尚不清楚通过Snx4蛋白进行的内体分选是否有助于自噬。缺少Snx4的细胞在饥饿诱导的非选择性自噬中表现出缺陷,线粒体磷脂酰乙醇胺合成的消融会严重加剧该缺陷。在这些条件下,磷脂酰丝氨酸积累在内体和液泡的膜中,自噬中间体积累在细胞质内,同型液泡融合受到损害。 Snx4-Atg20二聚体显示出对体外含磷脂酰丝氨酸的膜的结合和重塑的偏爱,表明Snx4-Atg20包被的载体从内体输出富含磷脂酰丝氨酸的膜。通过增加磷脂酰乙醇胺通过替代途径的生物合成,可恢复自噬和液泡融合,这表明通过Snx4家族分选神经毒素进行逆向分选可维持液泡膜自噬和融合能力所需的甘油磷脂稳态。

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