Autophagy is an evolutionarily conserved process that is essential for cellular homeostasis and organismal viability in eukaryotes. However, the extent of its functions in higher-order processes of organismal physiology and behavior is still unknown. Here, we report that autophagy is essential for the maintenance of balance in mice and that its deficiency leads to severe balance disorders. We generated mice deficient in autophagin-1 protease (Atg4b) and showed that they had substantial systemic reduction of autophagic activity. Autophagy reduction occurred through defective proteolytic processing of the autophagosome component LC3 and its paralogs, which compromised the rate of autophagosome maturation. Despite their viability, Atg4b-null mice showed unusual patterns of behavior that are common features of inner ear pathologies. Consistent with this, Atg4b-null mice showed defects in the development of otoconia, organic calcium carbonate crystals essential for sense of balance (equilibrioception). Furthermore, these abnormalities were exacerbated in Atg5–/– mice, which completely lack the ability to perform autophagy, confirming that autophagic activity is necessary for otoconial biogenesis. Autophagy deficiency also led to impaired secretion and assembly of otoconial core proteins, thus hampering otoconial development. Taken together, these results describe an essential role for autophagy in inner ear development and equilibrioception and open new possibilities for understanding and treating human balance disorders, which are of growing relevance among the elderly population.
Guillermo Mariño, Alvaro F. Fernández, Sandra Cabrera, Yunxia W. Lundberg, Rubén Cabanillas, Francisco Rodríguez, Natalia Salvador-Montoliu, José A. Vega, Antonino Germanà, Antonio Fueyo, José M.P. Freije, Carlos López-Otín
Title and authors | Publication | Year |
---|---|---|
The functional and pathological relevance of autophagy proteases
Álvaro F. Fernández, Carlos López-Otín |
Journal of Clinical Investigation | 2015 |
Secretory autophagy
M Ponpuak, MA Mandell, T Kimura, S Chauhan, C Cleyrat, V Deretic |
Current Opinion in Cell Biology | 2015 |
Essential role for the ATG4B protease and autophagy in bleomycin-induced pulmonary fibrosis
S Cabrera, M Maciel, I Herrera, T Nava, F Vergara, M Gaxiola, C López-Otín, M Selman, A Pardo |
Autophagy | 2015 |
ATG4B (Autophagin-1) Phosphorylation Modulates Autophagy
Z Yang, RP Wilkie-Grantham, T Yanagi, CW Shu, S Matsuzawa, JC Reed |
The Journal of biological chemistry | 2015 |
Enhanced Epithelial-to-Mesenchymal Transition Associated with Lysosome Dysfunction in Podocytes: Role of p62/Sequestosome 1 as a Signaling Hub
Guangbi Li, Cai-Xia Li, Min Xia, Joseph K. Ritter, Todd W. B. Gehr, Krishna Boini, Pin-Lan Li |
Cellular Physiology and Biochemistry | 2015 |
A Missense Change in the ATG4D Gene Links Aberrant Autophagy to a Neurodegenerative Vacuolar Storage Disease
K Kyöstilä, P Syrjä, V Jagannathan, G Chandrasekar, TS Jokinen, EH Seppälä, D Becker, M Drögemüller, E Dietschi, C Drögemüller, J Lang, F Steffen, C Rohdin, KH Jäderlund, AK Lappalainen, K Hahn, P Wohlsein, W Baumgärtner, D Henke, A Oevermann, J Kere, H Lohi, T Leeb, GS Barsh |
PLoS genetics | 2015 |
A REDD1/TXNIP pro-oxidant complex regulates ATG4B activity to control stress-induced autophagy and sustain exercise capacity
S Qiao, M Dennis, X Song, DD Vadysirisack, D Salunke, Z Nash, Z Yang, M Liesa, J Yoshioka, SI Matsuzawa, OS Shirihai, RT Lee, JC Reed, LW Ellisen |
Nature Communications | 2015 |
Coxsackievirus can exploit LC3 in both autophagy-dependent and -independent manners in vivo
M Alirezaei, CT Flynn, MR Wood, S Harkins, JL Whitton |
Autophagy | 2015 |
Unique role for ATG5 in neutrophil-mediated immunopathology during M. tuberculosis infection
JM Kimmey, JP Huynh, LA Weiss, S Park, A Kambal, J Debnath, HW Virgin, CL Stallings |
Nature | 2015 |
Mir-24-3p downregulation contributes to VP16-DDP resistance in small-cell lung cancer by targeting ATG4A.
Pan B, Chen Y, Song H, Xu Y, Wang R, Chen L |
Oncotarget | 2015 |