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A Voltage-Gated Calcium Channel Regulates Lysosomal Fusion with Endosomes and Autophagosomes and Is Required for Neuronal Homeostasis

Autophagy helps deliver sequestered intracellular cargo to lysosomes for proteolytic degradation and thereby maintains cellular homeostasis by preventing accumulation of toxic substances in cells. In a forward mosaic screen in Drosophila designed to identify genes required for neuronal function and...

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Autores principales: Tian, Xuejun, Gala, Upasana, Zhang, Yongping, Shang, Weina, Nagarkar Jaiswal, Sonal, di Ronza, Alberto, Jaiswal, Manish, Yamamoto, Shinya, Sandoval, Hector, Duraine, Lita, Sardiello, Marco, Sillitoe, Roy V., Venkatachalam, Kartik, Fan, Hengyu, Bellen, Hugo J., Tong, Chao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4374850/
https://www.ncbi.nlm.nih.gov/pubmed/25811491
http://dx.doi.org/10.1371/journal.pbio.1002103
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author Tian, Xuejun
Gala, Upasana
Zhang, Yongping
Shang, Weina
Nagarkar Jaiswal, Sonal
di Ronza, Alberto
Jaiswal, Manish
Yamamoto, Shinya
Sandoval, Hector
Duraine, Lita
Sardiello, Marco
Sillitoe, Roy V.
Venkatachalam, Kartik
Fan, Hengyu
Bellen, Hugo J.
Tong, Chao
author_facet Tian, Xuejun
Gala, Upasana
Zhang, Yongping
Shang, Weina
Nagarkar Jaiswal, Sonal
di Ronza, Alberto
Jaiswal, Manish
Yamamoto, Shinya
Sandoval, Hector
Duraine, Lita
Sardiello, Marco
Sillitoe, Roy V.
Venkatachalam, Kartik
Fan, Hengyu
Bellen, Hugo J.
Tong, Chao
author_sort Tian, Xuejun
collection PubMed
description Autophagy helps deliver sequestered intracellular cargo to lysosomes for proteolytic degradation and thereby maintains cellular homeostasis by preventing accumulation of toxic substances in cells. In a forward mosaic screen in Drosophila designed to identify genes required for neuronal function and maintenance, we identified multiple cacophony (cac) mutant alleles. They exhibit an age-dependent accumulation of autophagic vacuoles (AVs) in photoreceptor terminals and eventually a degeneration of the terminals and surrounding glia. cac encodes an α1 subunit of a Drosophila voltage-gated calcium channel (VGCC) that is required for synaptic vesicle fusion with the plasma membrane and neurotransmitter release. Here, we show that cac mutant photoreceptor terminals accumulate AV-lysosomal fusion intermediates, suggesting that Cac is necessary for the fusion of AVs with lysosomes, a poorly defined process. Loss of another subunit of the VGCC, α2δ or straightjacket (stj), causes phenotypes very similar to those caused by the loss of cac, indicating that the VGCC is required for AV-lysosomal fusion. The role of VGCC in AV-lysosomal fusion is evolutionarily conserved, as the loss of the mouse homologues, Cacna1a and Cacna2d2, also leads to autophagic defects in mice. Moreover, we find that CACNA1A is localized to the lysosomes and that loss of lysosomal Cacna1a in cerebellar cultured neurons leads to a failure of lysosomes to fuse with endosomes and autophagosomes. Finally, we show that the lysosomal CACNA1A but not the plasma-membrane resident CACNA1A is required for lysosomal fusion. In summary, we present a model in which the VGCC plays a role in autophagy by regulating the fusion of AVs with lysosomes through its calcium channel activity and hence functions in maintaining neuronal homeostasis.
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spelling pubmed-43748502015-04-04 A Voltage-Gated Calcium Channel Regulates Lysosomal Fusion with Endosomes and Autophagosomes and Is Required for Neuronal Homeostasis Tian, Xuejun Gala, Upasana Zhang, Yongping Shang, Weina Nagarkar Jaiswal, Sonal di Ronza, Alberto Jaiswal, Manish Yamamoto, Shinya Sandoval, Hector Duraine, Lita Sardiello, Marco Sillitoe, Roy V. Venkatachalam, Kartik Fan, Hengyu Bellen, Hugo J. Tong, Chao PLoS Biol Research Article Autophagy helps deliver sequestered intracellular cargo to lysosomes for proteolytic degradation and thereby maintains cellular homeostasis by preventing accumulation of toxic substances in cells. In a forward mosaic screen in Drosophila designed to identify genes required for neuronal function and maintenance, we identified multiple cacophony (cac) mutant alleles. They exhibit an age-dependent accumulation of autophagic vacuoles (AVs) in photoreceptor terminals and eventually a degeneration of the terminals and surrounding glia. cac encodes an α1 subunit of a Drosophila voltage-gated calcium channel (VGCC) that is required for synaptic vesicle fusion with the plasma membrane and neurotransmitter release. Here, we show that cac mutant photoreceptor terminals accumulate AV-lysosomal fusion intermediates, suggesting that Cac is necessary for the fusion of AVs with lysosomes, a poorly defined process. Loss of another subunit of the VGCC, α2δ or straightjacket (stj), causes phenotypes very similar to those caused by the loss of cac, indicating that the VGCC is required for AV-lysosomal fusion. The role of VGCC in AV-lysosomal fusion is evolutionarily conserved, as the loss of the mouse homologues, Cacna1a and Cacna2d2, also leads to autophagic defects in mice. Moreover, we find that CACNA1A is localized to the lysosomes and that loss of lysosomal Cacna1a in cerebellar cultured neurons leads to a failure of lysosomes to fuse with endosomes and autophagosomes. Finally, we show that the lysosomal CACNA1A but not the plasma-membrane resident CACNA1A is required for lysosomal fusion. In summary, we present a model in which the VGCC plays a role in autophagy by regulating the fusion of AVs with lysosomes through its calcium channel activity and hence functions in maintaining neuronal homeostasis. Public Library of Science 2015-03-26 /pmc/articles/PMC4374850/ /pubmed/25811491 http://dx.doi.org/10.1371/journal.pbio.1002103 Text en © 2015 Tian et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Tian, Xuejun
Gala, Upasana
Zhang, Yongping
Shang, Weina
Nagarkar Jaiswal, Sonal
di Ronza, Alberto
Jaiswal, Manish
Yamamoto, Shinya
Sandoval, Hector
Duraine, Lita
Sardiello, Marco
Sillitoe, Roy V.
Venkatachalam, Kartik
Fan, Hengyu
Bellen, Hugo J.
Tong, Chao
A Voltage-Gated Calcium Channel Regulates Lysosomal Fusion with Endosomes and Autophagosomes and Is Required for Neuronal Homeostasis
title A Voltage-Gated Calcium Channel Regulates Lysosomal Fusion with Endosomes and Autophagosomes and Is Required for Neuronal Homeostasis
title_full A Voltage-Gated Calcium Channel Regulates Lysosomal Fusion with Endosomes and Autophagosomes and Is Required for Neuronal Homeostasis
title_fullStr A Voltage-Gated Calcium Channel Regulates Lysosomal Fusion with Endosomes and Autophagosomes and Is Required for Neuronal Homeostasis
title_full_unstemmed A Voltage-Gated Calcium Channel Regulates Lysosomal Fusion with Endosomes and Autophagosomes and Is Required for Neuronal Homeostasis
title_short A Voltage-Gated Calcium Channel Regulates Lysosomal Fusion with Endosomes and Autophagosomes and Is Required for Neuronal Homeostasis
title_sort voltage-gated calcium channel regulates lysosomal fusion with endosomes and autophagosomes and is required for neuronal homeostasis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4374850/
https://www.ncbi.nlm.nih.gov/pubmed/25811491
http://dx.doi.org/10.1371/journal.pbio.1002103
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