FB2026_01 , released March 12, 2026
FB2026_01 , released March 12, 2026
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Citation
Gutiérrez-Pérez, P., Santillán, E.M., Lendl, T., Wang, J., Schrempf, A., Steinacker, T.L., Asparuhova, M., Brandstetter, M., Haselbach, D., Cochella, L. (2021). miR-1 sustains muscle physiology by controlling V-ATPase complex assembly.  Sci. Adv. 7(42): eabh1434.
FlyBase ID
FBrf0252827
Publication Type
Research paper
Abstract
Muscle function requires unique structural and metabolic adaptations that can render muscle cells selectively vulnerable, with mutations in some ubiquitously expressed genes causing myopathies but sparing other tissues. We uncovered a muscle cell vulnerability by studying miR-1, a deeply conserved, muscle-specific microRNA whose ablation causes various muscle defects. Using Caenorhabditis elegans, we found that miR-1 represses multiple subunits of the ubiquitous vacuolar adenosine triphosphatase (V-ATPase) complex, which is essential for internal compartment acidification and metabolic signaling. V-ATPase subunits are predicted miR-1 targets in animals ranging from C. elegans to humans, and we experimentally validated this in Drosophila. Unexpectedly, up-regulation of V-ATPase subunits upon miR-1 deletion causes reduced V-ATPase function due to defects in complex assembly. These results reveal V-ATPase assembly as a conserved muscle cell vulnerability and support a previously unknown role for microRNAs in the regulation of protein complexes.
PubMed ID
PubMed Central ID
PMC8519577 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Sci. Adv.
    Title
    Science advances
    ISBN/ISSN
    2375-2548
    Data From Reference
    Genes (1)