Weimer Kristina, DiMario Joseph X
School of Graduate and Postdoctoral Studies, Chicago Medical School, Rosalind Franklin University of Medicine and Science, 3333 Green Bay Road, North Chicago, IL 60064, USA.
School of Graduate and Postdoctoral Studies, Chicago Medical School, Rosalind Franklin University of Medicine and Science, 3333 Green Bay Road, North Chicago, IL 60064, USA.
Biochem Biophys Res Commun. 2016 Jan 22;469(4):842-7. doi: 10.1016/j.bbrc.2015.12.013. Epub 2015 Dec 18.
Different mechanisms control skeletal muscle fiber type gene expression at specific times in vertebrate development. Embryonic myogenesis leading to formation of primary muscle fibers in avian species is largely directed by myoblast cell commitment to the formation of diverse fiber types. In contrast, development of different secondary fiber types during fetal myogenesis is partly determined by neural influences. In both primary and secondary chicken muscle fibers, differential expression of the slow myosin heavy chain 2 (MyHC2) gene distinguishes fast from fast/slow muscle fibers. This study focused on the transcriptional regulation of the slow MyHC2 gene in primary myotubes formed from distinct fast/slow and fast myogenic cell lineages. Promoter deletion analyses identified a discrete 86 bp promoter segment that conferred fiber type, lineage-specific gene expression in fast/slow versus fast myoblast derived primary myotubes. Sequence analysis and promoter activity assays determined that this segment contains two functional cis-regulatory elements. One element is a non-canonical E-box, and electromobility shift assays demonstrated that both cis-elements interacted with the E-protein, E47. The results indicate that primary muscle fiber type specific expression of the slow MyHC2 gene is controlled by a novel mechanism involving a transcriptional complex that includes E47 at a non-canonical E-box.
在脊椎动物发育的特定时期,不同的机制控制着骨骼肌纤维类型的基因表达。在鸟类中,导致初级肌纤维形成的胚胎肌生成在很大程度上由成肌细胞对不同纤维类型形成的定向决定。相比之下,胎儿期肌生成过程中不同次级纤维类型的发育部分由神经影响决定。在鸡的初级和次级肌纤维中,慢肌球蛋白重链2(MyHC2)基因的差异表达区分了快肌纤维和快/慢肌纤维。本研究聚焦于由不同的快/慢和成肌细胞系形成的初级肌管中慢MyHC2基因的转录调控。启动子缺失分析确定了一个86 bp的离散启动子片段,该片段在快/慢和成肌细胞衍生的初级肌管中赋予了纤维类型、谱系特异性基因表达。序列分析和启动子活性测定确定该片段包含两个功能性顺式调控元件。一个元件是一个非典型E盒,电泳迁移率变动分析表明这两个顺式元件都与E蛋白E47相互作用。结果表明,慢MyHC2基因的初级肌纤维类型特异性表达由一种新机制控制,该机制涉及一个转录复合物,该复合物在一个非典型E盒处包含E47。