Dopey-dependent regulation of extracellular vesicles maintains neuronal morphology

生物 细胞外小泡 形态学(生物学) 细胞外 小泡 细胞生物学 生物物理学 生物化学 动物
作者
Seungmee Park,Nathaniel Noblett,Lauren J Pitts,A. Colavita,Ann M. Wehman,Yishi Jin,Andrew Chisholm
出处
期刊:Current Biology [Elsevier BV]
卷期号:34 (21): 4920-4933.e11 被引量:3
标识
DOI:10.1016/j.cub.2024.09.018
摘要

Highlights•DIP-2/Dip2 and SAX-2/Fry maintain the morphology of mature neurons•dip-2 sax-2 defects are suppressed by gain of function in PAD-1 or TAT-5•dip-2 sax-2 double mutants display increased extracellular vesicles (EVs)•PAD-1 or TAT-5 gain of function suppresses EV releaseSummaryMature neurons maintain their distinctive morphology for extended periods in adult life. Compared to developmental neurite outgrowth, axon guidance, and target selection, relatively little is known of mechanisms that maintain the morphology of mature neurons. Loss of function in C. elegans dip-2, a member of the conserved lipid metabolic regulator Dip2 family, results in progressive overgrowth of neurites in adults. We find that dip-2 mutants display specific genetic interactions with sax-2, the C. elegans ortholog of Drosophila Furry and mammalian FRY. Combined loss of dip-2 and sax-2 results in failure to maintain neuronal morphology and elevated release of neuronal extracellular vesicles (EVs). By screening for suppressors of dip-2(0) sax-2(0) double mutant defects, we identified gain-of-function (gf) mutations in the conserved Dopey family protein PAD-1 and its associated phospholipid flippase TAT-5/ATP9A that restore normal neuronal morphology and normal levels of EV release to dip-2(0) sax-2(0) double mutants. Neuron-specific knockdown suggests that PAD-1(gf) can act cell autonomously in neurons. PAD-1(gf) displays increased association with the plasma membrane in oocytes and inhibits EV release in multiple cell types. Our findings uncover a novel functional network of DIP-2, SAX-2, PAD-1, and TAT-5 that maintains neuronal morphology and modulates EV release.Graphical abstract
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