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Quantitative high-content imaging identifies novel regulators of Neo1 trafficking at endosomes

机译:定量高内涵成像确定了内体上Neo1转运的新型调节剂

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摘要

P4-ATPases are a family of putative phospholipid flippases that regulate lipid membrane asymmetry, which is important for vesicle formation. Two yeast flippases, Drs2 and Neo1, have nonredundant functions in the recycling of the synaptobrevin-like v-SNARE Snc1 from early endosomes. Drs2 activity is needed to form vesicles and regulate its own trafficking, suggesting that flippase activity and localization are linked. However, the role of Neo1 in endosomal recycling is not well characterized. To identify novel regulators of Neo1 trafficking and activity at endosomes, we first identified mutants with impaired recycling of a Snc1-based reporter and subsequently used high-content microscopy to classify these mutants based on the localization of Neo1 or its binding partners, Mon2 and Dop1. This analysis identified a role for Arl1 in stabilizing the Mon2/Dop1 complex and uncovered a new function for Vps13 in early endosome recycling and Neo1 localization. We further showed that the cargo-selective sorting nexin Snx3 is required for Neo1 trafficking and identified an Snx3 sorting motif in the Neo1 N-terminus. Of importance, the Snx3-dependent sorting of Neo1 was required for the correct sorting of another Snx3 cargo protein, suggesting that the incorporation of Neo1 into recycling tubules may influence their formation.
机译:P4-ATPase是调节脂质膜不对称性的推定磷脂类脂酶家族,这对囊泡形成很重要。在早期的内体中,突触连接蛋白样的v-SNARE Snc1的回收利用中有两种酵母菌,Drs2和Neo1具有非冗余功能。需要Drs2的活性来形成囊泡并调节其自身的运输,这表明脂肪酶的活性和定位是相关的。但是,Neo1在内体再循环中的作用尚不明确。为了确定Neo1转运和内体活性的新型调节剂,我们首先鉴定了基于Snc1的报道分子回收利用受损的突变体,随后使用高倍显微镜根据Neo1或其结合伙伴Mon2和Dop1的定位对这些突变体进行分类。 。该分析确定了Arl1在稳定Mon2 / Dop1复合物中的作用,并揭示了Vps13在早期内体循环和Neo1定位中的新功能。我们进一步表明,货物选择性分选nexin Snx3是Neo1贩运所必需的,并在Neo1 N端确定了Snx3分选基序。重要的是,Neo1的依赖于Snx3的分选对于另一Snx3货物蛋白的正确分选是必需的,这表明将Neo1掺入回收小管可能会影响其形成。

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