bioRxiv · 10.1101/2025.05.13.653755
Exercise Related microRNAs in C. elegans Regulate Calcium Homeostasis and Mitochondrial Dynamics: Conserved pathways, Divergent mircoRNAs
Abstract
Exercise can help mitigate age-related muscle atrophy, promoting mitochondrial function, Ca2+ homeostasis and regulating gene expression. MicroRNAs (miRs) are crucial post-transcriptional regulators of gene expression, fine tuning protein levels to maintain cellular homeostasis. In C. elegans, a 5-day swimming regimen increased mitochondrial content, lifespan and fitness. Small RNA sequencing identified exercise specific miRs, including increased levels of cel-miR-57-5p and cel-miR-249-3p, and decreased cel-miR-72-3p and cel-miR-77-5p. mir-57 and mir-249 mutant strains had enhanced fertility, survival and lifespan, whereas mir-72 and mir-77 mutant strains had diminished fertility, survival and lifespan. Interestingly both miR-77 and mir-249 mutant strains had disrupted mitochondrial morphology and reduced fitness following exercise. The exercise related miRs identified in C. elegans did not have conserved mammalian orthologs. Exercise regulated mammalian miRs were identified from the literature including mmu-miR-181a-5p, mmu-miR-199a-5p and mmu-miR-378a-3p. Treatment of murine myoblasts with mmu-miR-181a-5p and mmu-miR-378a-3p enhanced mitochondrial content, autophagy markers and myogenesis, while mmu-miR-199a-5p impaired these processes. Exercise related miRs identified in C. elegans target genes regulating Ca2+ homeostasis such as ipp-5 (inositol Polyphosphate-5-phosphatase), sca-1 (Ca2+ transporting ATPase) and ncx-2 (mitochondrial Na+/Ca2+ antiporter). It was also confirmed that mmu-miR181a-5p (miR181) targets Inpp5a and antogmiR-181 (AM181) treatment decreased Ca2+ handling in myotubes. Similarly, mmu-miR-378a-3p and cel-miR-249-3p target Kinase Suppressor of Ras (Ksr1)/ksr-2, involved in the MAPK pathway. Despite direct conservation of exercise related miRs from nematodes to mammals there are common regulatory pathways, contributing to exercise-induced adaptations. Graphical abstractThe exercise related microRNAs (cel-miR-77-5p and cel-miR-249-3p) identified in C. elegans following a 5-day swimming protocol are not conserved in mammalians. However, the microRNAs identified share common gene targets regulating Ca2+ homeostasis and mitochondrial function, with previously identified exercise related microRNAs in murine models. The results highlight conserved regulatory adaptive mechanisms in response to exercise. O_FIG O_LINKSMALLFIG WIDTH=175 HEIGHT=200 SRC="FIGDIR/small/653755v2_ufig1.gif" ALT="Figure 1"> View larger version (25K): org.highwire.dtl.DTLVardef@1da431forg.highwire.dtl.DTLVardef@6cdb70org.highwire.dtl.DTLVardef@ba9d76org.highwire.dtl.DTLVardef@1b7b481_HPS_FORMAT_FIGEXP M_FIG C_FIG
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Xia, Q., Tang, J., Casas-Martinez, J. C., Li, P., Quinlan, L. R., Goljanek-Whysall, K., McDonagh, B.. 2025-05-16. Exercise Related microRNAs in C. elegans Regulate Calcium Homeostasis and Mitochondrial Dynamics: Conserved pathways, Divergent mircoRNAs. https://doi.org/10.1101/2025.05.13.653755
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