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SIPA1L2 controls trafficking and local signaling of TrkB-containing amphisomes at presynaptic terminals.

Authors :
Andres-Alonso, Maria
Ammar, Mohamed Raafet
Butnaru, Ioana
Gomes, Guilherme M.
Acuña Sanhueza, Gustavo
Raman, Rajeev
Yuanxiang, PingAn
Borgmeyer, Maximilian
Lopez-Rojas, Jeffrey
Raza, Syed Ahsan
Brice, Nicola
Hausrat, Torben J.
Macharadze, Tamar
Diaz-Gonzalez, Silvia
Carlton, Mark
Failla, Antonio Virgilio
Stork, Oliver
Schweizer, Michaela
Gundelfinger, Eckart D.
Kneussel, Matthias
Source :
Nature Communications; 11/29/2019, Vol. 10 Issue 1, pN.PAG-N.PAG, 1p
Publication Year :
2019

Abstract

Amphisomes are organelles of the autophagy pathway that result from the fusion of autophagosomes with late endosomes. While biogenesis of autophagosomes and late endosomes occurs continuously at axon terminals, non-degradative roles of autophagy at boutons are barely described. Here, we show that in neurons BDNF/TrkB traffick in amphisomes that signal locally at presynaptic boutons during retrograde transport to the soma. This is orchestrated by the Rap GTPase-activating (RapGAP) protein SIPA1L2, which connects TrkB amphisomes to a dynein motor. The autophagosomal protein LC3 regulates RapGAP activity of SIPA1L2 and controls retrograde trafficking and local signaling of TrkB. Following induction of presynaptic plasticity, amphisomes dissociate from dynein at boutons enabling local signaling and promoting transmitter release. Accordingly, sipa1l2 knockout mice show impaired BDNF-dependent presynaptic plasticity. Taken together, the data suggest that in hippocampal neurons, TrkB-signaling endosomes are in fact amphisomes that during retrograde transport have local signaling capacity in the context of presynaptic plasticity. There is growing evidence that autophagy might serve specialized functions in neurons besides its role in protein homeostasis. In this study, authors demonstrate that axonal retrograde transport of BDNF/TrkB in neuronal amphisomes is involved in plasticity-relevant local signaling at presynaptic boutons and that SIPA1L2, a member of the SIPA1L family of neuronal RapGAPs, associates via LC3b to TrkB-containing amphisomes to regulate its motility and signaling at the axon terminals [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
10
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
139922537
Full Text :
https://doi.org/10.1038/s41467-019-13224-z