自噬
细胞生物学
ATG5型
内质网
神经突
分泌物
生物
生物化学
细胞凋亡
体外
作者
José Wojnacki,Sébastien Nola,Philippe Bun,Béatrice Cholley,Francesca Filippini,Mary T. Pressé,Joanna Lipecka,Sin Man Lam,Julie Nguyen,A K Simon,Amine Ouslimani,Guanghou Shui,Claudio M. Fader,María Isabel Colombo,Ida Chiara Guerrera,Thierry Galli
出处
期刊:Cell Reports
[Cell Press]
日期:2020-12-01
卷期号:33 (12): 108536-108536
被引量:40
标识
DOI:10.1016/j.celrep.2020.108536
摘要
VAMP7 is involved in autophagy and in exocytosis-mediated neurite growth, two yet unconnected cellular pathways. Here, we find that nutrient restriction and activation of autophagy stimulate axonal growth, while autophagy inhibition leads to loss of neuronal polarity. VAMP7 knockout (KO) neuronal cells show impaired neurite growth, whereas this process is increased in autophagy-null ATG5 KO cells. We find that endoplasmic reticulum (ER)-phagy-related LC3-interacting-region-containing proteins Atlastin 3 and Reticulon 3 (RTN3) are more abundant in autophagy-related protein ATG5 KO and less abundant in VAMP7 KO secretomes. Treatment of neuronal cells with ATG5 or VAMP7 KO conditioned medium does not recapitulate the effect of these KOs on neurite growth. A nanobody directed against VAMP7 inhibits axonal overgrowth induced by nutrient restriction. Furthermore, expression of the inhibitory Longin domain of VAMP7 impairs the subcellular localization of RTN3 in neurons. We propose that VAMP7-dependent secretion of RTN3 regulates neurite growth.
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