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ATP13A2 facilitates HDAC6 recruitment to lysosome to promote autophagosome–lysosome fusion

Mutations in ATP13A2 cause Kufor-Rakeb syndrome, an autosomal recessive form of juvenile-onset atypical Parkinson’s disease (PD). Recent work tied ATP13A2 to autophagy and other cellular features of neurodegeneration, but how ATP13A2 governs numerous cellular functions in PD pathogenesis is not unde...

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Autores principales: Wang, Ruoxi, Tan, Jieqiong, Chen, Tingting, Han, Hailong, Tian, Runyi, Tan, Ya, Wu, Yiming, Cui, Jingyi, Chen, Fang, Li, Jie, Lv, Lu, Guan, Xinjie, Shang, Shuai, Lu, Jiahong, Zhang, Zhuohua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6314552/
https://www.ncbi.nlm.nih.gov/pubmed/30538141
http://dx.doi.org/10.1083/jcb.201804165
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author Wang, Ruoxi
Tan, Jieqiong
Chen, Tingting
Han, Hailong
Tian, Runyi
Tan, Ya
Wu, Yiming
Cui, Jingyi
Chen, Fang
Li, Jie
Lv, Lu
Guan, Xinjie
Shang, Shuai
Lu, Jiahong
Zhang, Zhuohua
author_facet Wang, Ruoxi
Tan, Jieqiong
Chen, Tingting
Han, Hailong
Tian, Runyi
Tan, Ya
Wu, Yiming
Cui, Jingyi
Chen, Fang
Li, Jie
Lv, Lu
Guan, Xinjie
Shang, Shuai
Lu, Jiahong
Zhang, Zhuohua
author_sort Wang, Ruoxi
collection PubMed
description Mutations in ATP13A2 cause Kufor-Rakeb syndrome, an autosomal recessive form of juvenile-onset atypical Parkinson’s disease (PD). Recent work tied ATP13A2 to autophagy and other cellular features of neurodegeneration, but how ATP13A2 governs numerous cellular functions in PD pathogenesis is not understood. In this study, the ATP13A2-deficient mouse developed into aging-dependent phenotypes resembling those of autophagy impairment. ATP13A2 deficiency impaired autophagosome–lysosome fusion in cultured cells and in in vitro reconstitution assays. In ATP13A2-deficient cells or Drosophila melanogaster or mouse tissues, lysosomal localization and activity of HDAC6 were reduced, with increased acetylation of tubulin and cortactin. Wild-type HDAC6, but not a deacetylase-inactive mutant, restored autophagosome–lysosome fusion, antagonized cortactin hyperacetylation, and promoted lysosomal localization of cortactin in ATP13A2-deficient cells. Mechanistically, ATP13A2 facilitated recruitment of HDAC6 and cortactin to lysosomes. Cortactin overexpression in cultured cells reversed ATP13A2 deficiency–associated impairment of autophagosome–lysosome fusion. PD-causing ATP13A2 mutants failed to rescue autophagosome–lysosome fusion or to promote degradation of protein aggregates and damaged mitochondria. These results suggest that ATP13A2 recruits HDAC6 to lysosomes to deacetylate cortactin and promotes autophagosome–lysosome fusion and autophagy. This study identifies ATP13A2 as an essential molecular component for normal autophagy flux in vivo and implies potential treatments targeting HDAC6-mediated autophagy for PD.
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spelling pubmed-63145522019-07-07 ATP13A2 facilitates HDAC6 recruitment to lysosome to promote autophagosome–lysosome fusion Wang, Ruoxi Tan, Jieqiong Chen, Tingting Han, Hailong Tian, Runyi Tan, Ya Wu, Yiming Cui, Jingyi Chen, Fang Li, Jie Lv, Lu Guan, Xinjie Shang, Shuai Lu, Jiahong Zhang, Zhuohua J Cell Biol Research Articles Mutations in ATP13A2 cause Kufor-Rakeb syndrome, an autosomal recessive form of juvenile-onset atypical Parkinson’s disease (PD). Recent work tied ATP13A2 to autophagy and other cellular features of neurodegeneration, but how ATP13A2 governs numerous cellular functions in PD pathogenesis is not understood. In this study, the ATP13A2-deficient mouse developed into aging-dependent phenotypes resembling those of autophagy impairment. ATP13A2 deficiency impaired autophagosome–lysosome fusion in cultured cells and in in vitro reconstitution assays. In ATP13A2-deficient cells or Drosophila melanogaster or mouse tissues, lysosomal localization and activity of HDAC6 were reduced, with increased acetylation of tubulin and cortactin. Wild-type HDAC6, but not a deacetylase-inactive mutant, restored autophagosome–lysosome fusion, antagonized cortactin hyperacetylation, and promoted lysosomal localization of cortactin in ATP13A2-deficient cells. Mechanistically, ATP13A2 facilitated recruitment of HDAC6 and cortactin to lysosomes. Cortactin overexpression in cultured cells reversed ATP13A2 deficiency–associated impairment of autophagosome–lysosome fusion. PD-causing ATP13A2 mutants failed to rescue autophagosome–lysosome fusion or to promote degradation of protein aggregates and damaged mitochondria. These results suggest that ATP13A2 recruits HDAC6 to lysosomes to deacetylate cortactin and promotes autophagosome–lysosome fusion and autophagy. This study identifies ATP13A2 as an essential molecular component for normal autophagy flux in vivo and implies potential treatments targeting HDAC6-mediated autophagy for PD. Rockefeller University Press 2019-01-07 /pmc/articles/PMC6314552/ /pubmed/30538141 http://dx.doi.org/10.1083/jcb.201804165 Text en © 2018 Wang et al. http://www.rupress.org/terms/https://creativecommons.org/licenses/by-nc-sa/4.0/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Research Articles
Wang, Ruoxi
Tan, Jieqiong
Chen, Tingting
Han, Hailong
Tian, Runyi
Tan, Ya
Wu, Yiming
Cui, Jingyi
Chen, Fang
Li, Jie
Lv, Lu
Guan, Xinjie
Shang, Shuai
Lu, Jiahong
Zhang, Zhuohua
ATP13A2 facilitates HDAC6 recruitment to lysosome to promote autophagosome–lysosome fusion
title ATP13A2 facilitates HDAC6 recruitment to lysosome to promote autophagosome–lysosome fusion
title_full ATP13A2 facilitates HDAC6 recruitment to lysosome to promote autophagosome–lysosome fusion
title_fullStr ATP13A2 facilitates HDAC6 recruitment to lysosome to promote autophagosome–lysosome fusion
title_full_unstemmed ATP13A2 facilitates HDAC6 recruitment to lysosome to promote autophagosome–lysosome fusion
title_short ATP13A2 facilitates HDAC6 recruitment to lysosome to promote autophagosome–lysosome fusion
title_sort atp13a2 facilitates hdac6 recruitment to lysosome to promote autophagosome–lysosome fusion
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6314552/
https://www.ncbi.nlm.nih.gov/pubmed/30538141
http://dx.doi.org/10.1083/jcb.201804165
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