Giacinti Cristina, Musarò Antonio, De Falco Giulia, Jourdan Isabelle, Molinaro Mario, Bagella Luigi, Simone Cristiano, Giordano Antonio
Sbarro Institute for Cancer Research and Molecular Medicine, Center for Biotechnology, College of Science and Technology, Temple University, Philadelphia, USA.
J Cell Physiol. 2008 Sep;216(3):576-82. doi: 10.1002/jcp.21361.
Adult skeletal muscle contains a specialized population of myogenic quiescent stem cells, termed satellite cells, which contribute to repair myofibers after injury. During muscle regeneration, satellite cells exit their normal quiescent state, proliferate, activating MyoD and Myf-5 expression, and finally differentiate and fuse to reconstitute the injured muscle architecture. We have previously reported that cdk9 is required for myogenesis in vitro by activating MyoD-dependent transcription. In myoblasts induced to differentiate, MyoD recruits cdk9 on the chromatin of muscle-specific regulatory regions. This event correlates with chromatin-modifying enzyme recruitment and phosphorylation of cdk9-specific target residues at the carboxyl-terminal domain of RNA polymerase II. Here we report that a second cdk9 isoform, termed cdk9-55, plays a fundamental role in muscle regeneration and differentiation in vivo. This alternative form is specifically induced in injured myofibers and its activity is strictly required for the completion of muscle regeneration process.
成体骨骼肌包含一群特殊的生肌静止干细胞,称为卫星细胞,它们在损伤后有助于修复肌纤维。在肌肉再生过程中,卫星细胞脱离其正常的静止状态,进行增殖,激活MyoD和Myf-5的表达,最终分化并融合以重建受损的肌肉结构。我们之前曾报道,cdk9通过激活依赖MyoD的转录在体外成肌过程中是必需的。在诱导分化的成肌细胞中,MyoD在肌肉特异性调控区域的染色质上募集cdk9。这一事件与染色质修饰酶的募集以及RNA聚合酶II羧基末端结构域中cdk9特异性靶位点的磷酸化相关。在此我们报道,另一种cdk9同工型,称为cdk9-55,在体内肌肉再生和分化中起重要作用。这种可变形式在受损肌纤维中特异性诱导产生,其活性对于肌肉再生过程的完成是严格必需的。