<p>Muscular dystrophy is a group of diseases characterized by progressive weakness and degeneration of skeletal muscles, for which there is currently no cure. Here, we show that microRNA (miR)-33a/b play a crucial role in muscle regeneration. miR-33a was upregulated during myoblast differentiation and in skeletal muscles of <i>mdx</i> mice, a genetic model of Duchenne muscular dystrophy (DMD). miR-33a deficiency enhanced muscle regeneration response to cardiotoxin injury and attenuated muscle degeneration and fibrosis in <i>mdx</i> mice. Conversely, a humanized mouse model expressing miR-33a and miR-33b showed exacerbated muscle degeneration and fibrosis. Mechanistically, miR-33a/b inhibited satellite cell proliferation, leading to reduced muscle regeneration and increased fibrosis by targeting <i>Cdk6</i>, <i>Fst</i>, and <i>Abca1</i>. Local and systemic administration of anti-miRNA oligonucleotides targeting miR-33a/b ameliorated the dystrophic phenotype in <i>mdx</i> mice. Furthermore, miR-33b inhibition upregulated these target genes in myotubes differentiated from human induced pluripotent stem cells derived from a patient with DMD. These findings indicate that miR-33a/b are involved in muscle regeneration and their inhibition may represent a potential therapeutic strategy for muscular dystrophy.</p>

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MicroRNA-33 inhibition ameliorates muscular dystrophy by enhancing skeletal muscle regeneration

  • Naoya Sowa,
  • Takahiro Horie,
  • Yuya Ide,
  • Osamu Baba,
  • Kengo Kora,
  • Takeshi Yoshida,
  • Yujiro Nakamura,
  • Shigenobu Matsumura,
  • Kazuki Matsushita,
  • Miyako Imanaka,
  • Fuquan Zou,
  • Eitaro Kume,
  • Hidenori Kojima,
  • Qiuxian Qian,
  • Kayo Kimura,
  • Ryotaro Otsuka,
  • Noriko Hara,
  • Tomohiro Yamasaki,
  • Chiharu Otani,
  • Yuta Tsujisaka,
  • Tomohide Takaya,
  • Chika Nishimura,
  • Dai Watanabe,
  • Koji Hasegawa,
  • Jun Kotera,
  • Kozo Oka,
  • Ryo Fujita,
  • Akihiro Takemiya,
  • Takashi Sasaki,
  • Yuuya Kasahara,
  • Satoshi Obika,
  • Takeshi Kimura,
  • Koh Ono

摘要

Muscular dystrophy is a group of diseases characterized by progressive weakness and degeneration of skeletal muscles, for which there is currently no cure. Here, we show that microRNA (miR)-33a/b play a crucial role in muscle regeneration. miR-33a was upregulated during myoblast differentiation and in skeletal muscles of mdx mice, a genetic model of Duchenne muscular dystrophy (DMD). miR-33a deficiency enhanced muscle regeneration response to cardiotoxin injury and attenuated muscle degeneration and fibrosis in mdx mice. Conversely, a humanized mouse model expressing miR-33a and miR-33b showed exacerbated muscle degeneration and fibrosis. Mechanistically, miR-33a/b inhibited satellite cell proliferation, leading to reduced muscle regeneration and increased fibrosis by targeting Cdk6, Fst, and Abca1. Local and systemic administration of anti-miRNA oligonucleotides targeting miR-33a/b ameliorated the dystrophic phenotype in mdx mice. Furthermore, miR-33b inhibition upregulated these target genes in myotubes differentiated from human induced pluripotent stem cells derived from a patient with DMD. These findings indicate that miR-33a/b are involved in muscle regeneration and their inhibition may represent a potential therapeutic strategy for muscular dystrophy.