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Lack of miR-378 attenuates muscular dystrophy in mdx mice
Paulina Podkalicka, Olga Mucha, Iwona Bronisz-Budzyńska, Magdalena Kozakowska, Katarzyna Pietraszek-Gremplewicz, Anna Cetnarowska, Urszula Głowniak-Kwitek, Karolina Bukowska-Strakova, Maciej Cieśla, Maria Kulecka, Jerzy Ostrowski, Michał Mikuła, Anna Potulska-Chromik, Anna Kostera-Pruszczyk, Alicja Józkowicz, Agnieszka Łoboda, Józef Dulak
Paulina Podkalicka, Olga Mucha, Iwona Bronisz-Budzyńska, Magdalena Kozakowska, Katarzyna Pietraszek-Gremplewicz, Anna Cetnarowska, Urszula Głowniak-Kwitek, Karolina Bukowska-Strakova, Maciej Cieśla, Maria Kulecka, Jerzy Ostrowski, Michał Mikuła, Anna Potulska-Chromik, Anna Kostera-Pruszczyk, Alicja Józkowicz, Agnieszka Łoboda, Józef Dulak
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Research Article Muscle biology

Lack of miR-378 attenuates muscular dystrophy in mdx mice

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Abstract

The severity of Duchenne muscular dystrophy (DMD), an incurable disease caused by the lack of dystrophin, might be modulated by different factors, including miRNAs. Among them, miR-378 is considered of high importance for muscle biology, but intriguingly, its role in DMD and its murine model (mdx mice) has not been thoroughly addressed so far. Here, we demonstrate that dystrophic mice additionally globally lacking miR-378 (double-KO [dKO] animals) exhibited better physical performance and improved absolute muscle force compared with mdx mice. Accordingly, markers of muscle damage in serum were significantly decreased in dKO mice, accompanied by diminished inflammation, fibrosis, and reduced abundance of regenerating fibers within muscles. The lack of miR-378 also normalized the aggravated fusion of dystrophin-deficient muscle satellite cells (mSCs). RNA sequencing of gastrocnemius muscle transcriptome revealed fibroblast growth factor 1 (Fgf1) as one of the most significantly downregulated genes in mice devoid of miR-378, indicating FGF1 as one of the mediators of changes driven by the lack of miR-378. In conclusion, we suggest that targeting miR-378 has the potential to ameliorate DMD pathology.

Authors

Paulina Podkalicka, Olga Mucha, Iwona Bronisz-Budzyńska, Magdalena Kozakowska, Katarzyna Pietraszek-Gremplewicz, Anna Cetnarowska, Urszula Głowniak-Kwitek, Karolina Bukowska-Strakova, Maciej Cieśla, Maria Kulecka, Jerzy Ostrowski, Michał Mikuła, Anna Potulska-Chromik, Anna Kostera-Pruszczyk, Alicja Józkowicz, Agnieszka Łoboda, Józef Dulak

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Figure 4

The KO of miR-378 affects the phenotype and properties of dystrophic muscle satellite cells (mSCs).

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The KO of miR-378 affects the phenotype and properties of dystrophic mus...
(A) The abundance of mSCs within the gastrocnemius muscle of 3-month-old mdx mice without the apparent influence of miR-378, as quantified based on Pax7+ nuclei per myofibers. Immunofluorescent staining with representative pictures; confocal microscope LSM-510, Carl Zeiss. Scale bar: 50 μm; n = 3–4/group. Arrows indicate Pax7+ cells (green) colocalizing with nuclei stained with Hoechst (blue). (B–D) The analysis of mSCs in hind limb muscles of 10-week-old mice; flow cytometry analysis; n = 5/group. (B) quiescent (CD34+) and activated (CD34–) cells contribution within mSCs (CD45–CD31–Sca1–α7i+) population showing a decrease in CD34– cells in dKO mice. The percentage of CD34+ (C) and CD34– (D) mSCs in S + G2 + M phases of the cell cycle, revealing a decreased percentage of mSCs in the proliferative state of the cell cycle in dKO mice. (E) Representative pictures of MyHC (green) and Hoechst (blue) immunofluorescent staining of mSCs isolated from hind limb muscles of 10-week-old mice differentiating for 3 days ex vivo. Nikon Eclipse microscope. Scale bar: 100 μm; n = 9–10/group. (F) Fusion index determined by the percentage of MyHC+ fibers containing 3 or more nuclei among the total number of nuclei showing a significant decrease in the fusion index in dKO mice; n = 9–10/group. Data are presented as mean ± SEM. **P < 0.01; ***P < 0.001; ****P < 0.0001; (A, C, D, and F) 1-way ANOVA with Tukey’s post hoc test; (B) 2-way ANOVA with Tukey’s post hoc test.

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