细胞生物学
LRRK2
分泌物
拉布
生物
神经退行性变
高尔基体
自噬
内科学
内质网
内分泌学
医学
生物化学
基因
细胞凋亡
GTP酶
突变
疾病
作者
Francesca Filippini,Sébastien Nola,Ahmed Zahraoui,Kévin Roger,Mansoore Esmaili,Ji Sun,José Wojnacki,Anaïs Vlieghe,Philippe Bun,Stéphanie Blanchon,Jean‐Christophe Rain,Jean‐Marc Taymans,Marie‐Christine Chartier‐Harlin,Ida Chiara Guerrera,Thierry Galli
出处
期刊:Cell Reports
[Cell Press]
日期:2023-03-01
卷期号:42 (3): 112221-112221
被引量:10
标识
DOI:10.1016/j.celrep.2023.112221
摘要
The neuropeptide VGF was recently proposed as a neurodegeneration biomarker. The Parkinson's disease-related protein leucine-rich repeat kinase 2 (LRRK2) regulates endolysosomal dynamics, a process that involves SNARE-mediated membrane fusion and could regulate secretion. Here we investigate potential biochemical and functional links between LRRK2 and v-SNAREs. We find that LRRK2 directly interacts with the v-SNAREs VAMP4 and VAMP7. Secretomics reveals VGF secretory defects in VAMP4 and VAMP7 knockout (KO) neuronal cells. In contrast, VAMP2 KO "regulated secretion-null" and ATG5 KO "autophagy-null" cells release more VGF. VGF is partially associated with extracellular vesicles and LAMP1+ endolysosomes. LRRK2 expression increases VGF perinuclear localization and impairs its secretion. Retention using selective hooks (RUSH) assays show that a pool of VGF traffics through VAMP4+ and VAMP7+ compartments, and LRRK2 expression delays its transport to the cell periphery. Overexpression of LRRK2 or VAMP7-longin domain impairs VGF peripheral localization in primary cultured neurons. Altogether, our results suggest that LRRK2 might regulate VGF secretion via interaction with VAMP4 and VAMP7.
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