Cargando…

Presynaptic autophagy is coupled to the synaptic vesicle cycle via ATG-9

Autophagy is a cellular degradation pathway essential for neuronal health and function. Autophagosome biogenesis occurs at synapses, is locally regulated, and increases in response to neuronal activity. The mechanisms that couple autophagosome biogenesis to synaptic activity remain unknown. In this...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Sisi, Park, Daehun, Manning, Laura, Hill, Sarah E., Cao, Mian, Xuan, Zhao, Gonzalez, Ian, Dong, Yongming, Clark, Benjamin, Shao, Lin, Okeke, Ifechukwu, Almoril-Porras, Agustin, Bai, Jihong, De Camilli, Pietro, Colón-Ramos, Daniel A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9017068/
https://www.ncbi.nlm.nih.gov/pubmed/35065714
http://dx.doi.org/10.1016/j.neuron.2021.12.031
_version_ 1784688696848547840
author Yang, Sisi
Park, Daehun
Manning, Laura
Hill, Sarah E.
Cao, Mian
Xuan, Zhao
Gonzalez, Ian
Dong, Yongming
Clark, Benjamin
Shao, Lin
Okeke, Ifechukwu
Almoril-Porras, Agustin
Bai, Jihong
De Camilli, Pietro
Colón-Ramos, Daniel A.
author_facet Yang, Sisi
Park, Daehun
Manning, Laura
Hill, Sarah E.
Cao, Mian
Xuan, Zhao
Gonzalez, Ian
Dong, Yongming
Clark, Benjamin
Shao, Lin
Okeke, Ifechukwu
Almoril-Porras, Agustin
Bai, Jihong
De Camilli, Pietro
Colón-Ramos, Daniel A.
author_sort Yang, Sisi
collection PubMed
description Autophagy is a cellular degradation pathway essential for neuronal health and function. Autophagosome biogenesis occurs at synapses, is locally regulated, and increases in response to neuronal activity. The mechanisms that couple autophagosome biogenesis to synaptic activity remain unknown. In this study, we determine that trafficking of ATG-9, the only transmembrane protein in the core autophagy pathway, links the synaptic vesicle cycle with autophagy. ATG-9-positive vesicles in C. elegans are generated from the trans-Golgi network via AP-3-dependent budding and delivered to presynaptic sites. At presynaptic sites, ATG-9 undergoes exo-endocytosis in an activity-dependent manner. Mutations that disrupt endocytosis, including a lesion in synaptojanin 1 associated with Parkinson’s disease, result in abnormal ATG-9 accumulation at clathrin-rich synaptic foci and defects in activity-induced presynaptic autophagy. Our findings uncover regulated key steps of ATG-9 trafficking at presynaptic sites and provide evidence that ATG-9 exo-endocytosis couples autophagosome biogenesis at presynaptic sites with the activity-dependent synaptic vesicle cycle.
format Online
Article
Text
id pubmed-9017068
institution National Center for Biotechnology Information
language English
publishDate 2022
record_format MEDLINE/PubMed
spelling pubmed-90170682023-03-02 Presynaptic autophagy is coupled to the synaptic vesicle cycle via ATG-9 Yang, Sisi Park, Daehun Manning, Laura Hill, Sarah E. Cao, Mian Xuan, Zhao Gonzalez, Ian Dong, Yongming Clark, Benjamin Shao, Lin Okeke, Ifechukwu Almoril-Porras, Agustin Bai, Jihong De Camilli, Pietro Colón-Ramos, Daniel A. Neuron Article Autophagy is a cellular degradation pathway essential for neuronal health and function. Autophagosome biogenesis occurs at synapses, is locally regulated, and increases in response to neuronal activity. The mechanisms that couple autophagosome biogenesis to synaptic activity remain unknown. In this study, we determine that trafficking of ATG-9, the only transmembrane protein in the core autophagy pathway, links the synaptic vesicle cycle with autophagy. ATG-9-positive vesicles in C. elegans are generated from the trans-Golgi network via AP-3-dependent budding and delivered to presynaptic sites. At presynaptic sites, ATG-9 undergoes exo-endocytosis in an activity-dependent manner. Mutations that disrupt endocytosis, including a lesion in synaptojanin 1 associated with Parkinson’s disease, result in abnormal ATG-9 accumulation at clathrin-rich synaptic foci and defects in activity-induced presynaptic autophagy. Our findings uncover regulated key steps of ATG-9 trafficking at presynaptic sites and provide evidence that ATG-9 exo-endocytosis couples autophagosome biogenesis at presynaptic sites with the activity-dependent synaptic vesicle cycle. 2022-03-02 2022-01-21 /pmc/articles/PMC9017068/ /pubmed/35065714 http://dx.doi.org/10.1016/j.neuron.2021.12.031 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Yang, Sisi
Park, Daehun
Manning, Laura
Hill, Sarah E.
Cao, Mian
Xuan, Zhao
Gonzalez, Ian
Dong, Yongming
Clark, Benjamin
Shao, Lin
Okeke, Ifechukwu
Almoril-Porras, Agustin
Bai, Jihong
De Camilli, Pietro
Colón-Ramos, Daniel A.
Presynaptic autophagy is coupled to the synaptic vesicle cycle via ATG-9
title Presynaptic autophagy is coupled to the synaptic vesicle cycle via ATG-9
title_full Presynaptic autophagy is coupled to the synaptic vesicle cycle via ATG-9
title_fullStr Presynaptic autophagy is coupled to the synaptic vesicle cycle via ATG-9
title_full_unstemmed Presynaptic autophagy is coupled to the synaptic vesicle cycle via ATG-9
title_short Presynaptic autophagy is coupled to the synaptic vesicle cycle via ATG-9
title_sort presynaptic autophagy is coupled to the synaptic vesicle cycle via atg-9
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9017068/
https://www.ncbi.nlm.nih.gov/pubmed/35065714
http://dx.doi.org/10.1016/j.neuron.2021.12.031
work_keys_str_mv AT yangsisi presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT parkdaehun presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT manninglaura presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT hillsarahe presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT caomian presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT xuanzhao presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT gonzalezian presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT dongyongming presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT clarkbenjamin presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT shaolin presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT okekeifechukwu presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT almorilporrasagustin presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT baijihong presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT decamillipietro presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9
AT colonramosdaniela presynapticautophagyiscoupledtothesynapticvesiclecycleviaatg9