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The transcriptional co-repressor TLE3 regulates myogenic differentiation by repressing the activity of the MyoD transcription factor.

J Biol Chem. 2017 Aug 04;292(31):12885-12894. Epub 2017 Jun 12
Shoichiro Kokabu 1 , Chihiro Nakatomi 2 , Takuma Matsubara 2 , Yusuke Ono 3 , William N Addison 4 , Jonathan W Lowery 5 , Mariko Urata 2 , Aaron M Hudnall 5 , Suzuro Hitomi 6 , Mitsushiro Nakatomi 7 , Tsuyoshi Sato 8 , Kenji Osawa 9 , Tetsuya Yoda 8 , Vicki Rosen 1 , Eijiro Jimi 10
Shoichiro Kokabu 1 , Chihiro Nakatomi 2 , Takuma Matsubara 2 , Yusuke Ono 3 , William N Addison 4 , Jonathan W Lowery 5 , Mariko Urata 2 , Aaron M Hudnall 5 , Suzuro Hitomi 6 , Mitsushiro Nakatomi 7 , Tsuyoshi Sato 8 , Kenji Osawa 9 , Tetsuya Yoda 8 , Vicki Rosen 1 , Eijiro Jimi 10
+ et al

[No authors listed]

Author information
  • 1 the Department of Developmental Biology, Harvard School of Dental Medicine, Boston, Massachusetts 02115.
  • 2 From the Divisions of Molecular Signaling and Biochemistry.
  • 3 the Musculoskeletal Molecular Biology Research Group, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki 852-8102, Japan.
  • 4 the Research Unit, Department of Human Genetics, Shriners Hospitals for Children, McGill University, Montreal, Quebec H4A 0A9, Canada.
  • 5 the Division of Biomedical Science, College of Osteopathic Medicine, Marian University, Indianapolis, Indiana 46222, and.
  • 6 Physiology, and.
  • 7 Anatomy, Department of Health Promotion, and.
  • 8 the Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Saitama Medical University, Moroyama-machi, Iruma-gun, Saitama 350-0495, Japan.
  • 9 Division of Oral Medicine, Department of Science of Physical Functions, Kyushu Dental University, Kitakyushu 803-8580, Japan.
  • 10 Oral Health Brain Health Total Health, Laboratory of Molecular and Cellular Biochemistry, Faculty of Dental Science, Kyushu University, Fukuoka 812-8582, Japan.

摘要


Satellite cells are skeletal muscle stem cells that provide myonuclei for postnatal muscle growth, maintenance, and repair/regeneration in adults. Normally, satellite cells are mitotically quiescent, but they are activated in response to muscle injury, in which case they proliferate extensively and exhibit up-regulated expression of the transcription factor MyoD, a master regulator of myogenesis. MyoD forms a heterodimer with E proteins through their basic helix-loop-helix domain, binds to E boxes in the genome and thereby activates transcription at muscle-specific promoters. The central role of MyoD in muscle differentiation has increased interest in finding potential MyoD regulators. Here we identified transducin-like enhancer of split (TLE3), one of the Groucho/TLE family members, as a regulator of MyoD function during myogenesis. TLE3 was expressed in activated and proliferative satellite cells in which increased TLE3 levels suppressed myogenic differentiation, and, conversely, reduced TLE3 levels promoted myogenesis with a concomitant increase in proliferation. We found that, via its glutamine- and serine/proline-rich domains, TLE3 interferes with MyoD function by disrupting the association between the basic helix-loop-helix domain of MyoD and E proteins. Our findings indicate that TLE3 participates in skeletal muscle homeostasis by dampening satellite cell differentiation via repression of MyoD transcriptional activity.

KEYWORDS: MyoD, TLE, basic helix-loop-helix (bHLH) transcription factor, mesenchymal stem cells (MSCs), myogenesis, skeletal muscle