Puri P L, Sartorelli V
Department of Biology, University of California San Diego, La Jolla, California, USA.
J Cell Physiol. 2000 Nov;185(2):155-73. doi: 10.1002/1097-4652(200011)185:2<155::AID-JCP1>3.0.CO;2-Z.
Skeletal muscle differentiation is influenced by multiple pathways, which regulate the activity of myogenic regulatory factors (MRFs)-the myogenic basic helix-loop-helix proteins and the MEF2-family members-in positive or negative ways. Here we will review and discuss the network of signals that regulate MRF function during myocyte proliferation, differentiation, and post-mitotic growth. Elucidating the mechanisms governing muscle-specific transcription will provide important insight in better understanding the embryonic development of muscle at the molecular level and will have important implications in setting out strategies aimed at muscle regeneration. Since the activity of MRFs are compromised in tumors of myogenic derivation-the rhabdomyosarcomas-the studies summarized in this review can provide a useful tool to uncover the molecular basis underlying the formation of these tumors.
骨骼肌分化受多种信号通路影响,这些信号通路以正向或负向方式调节生肌调节因子(MRFs)的活性,生肌调节因子即生肌碱性螺旋-环-螺旋蛋白和MEF2家族成员。在此,我们将回顾和讨论在肌细胞增殖、分化及有丝分裂后生长过程中调节MRF功能的信号网络。阐明肌肉特异性转录的调控机制,将为在分子水平更好地理解肌肉胚胎发育提供重要见解,并对制定肌肉再生策略具有重要意义。由于MRFs的活性在源自肌源性的肿瘤——横纹肌肉瘤中受损,本综述总结的研究可为揭示这些肿瘤形成的分子基础提供有用工具。