Croissant J D, Kim J H, Eichele G, Goering L, Lough J, Prywes R, Schwartz R J
Department of Cell Biology, Baylor College of Medicine, Houston, Texas 77030, USA.
Dev Biol. 1996 Jul 10;177(1):250-64. doi: 10.1006/dbio.1996.0160.
Serum response factor (SRF) gene expression in avian embryonic muscle lineages plays a central role in activating alpha-actin gene activity. In early stage HH 6 avian embryos, SRF mRNA expression showed strong localization to the neural groove, primitive streak, lateral plate mesoderm, and Hensen's node, while distinct SRF expression was seen later in the neural folds and the somites by HH stage 8. SRF transcripts appeared in the precardiac splanchnic mesoderm in stage HH 9 embryos and was detected at higher levels in the myocardium, somites, and lateral mesoderm of HH 11 embryos. SRF antibody staining demonstrated significant SRF protein accumulation in the myocardium of the developing heart and the myotomal portion of somites. During primary myogenesis in culture, SRF transcripts and nuclear SRF protein content increased about 40-fold, as primary myoblasts withdrew from the cell cycle, reaching their highest levels prior to the upregulation of the skeletal alpha-actin gene. A dominant-negative SRF mutant, SRFpm1, which inhibited DNA binding, but not dimerization of monomeric SRF subunits, blocked transcriptional activation of a skeletal alpha-actin promoter-luciferase reporter gene during myogenesis. Transcriptional blockade was reversed by co-transfections of a wild-type SRF expression vector, but was not rescued by the expression of other myogenic factors, such as MyoD and Mef-2C. Thus, SRF displayed an embryonic expression pattern restricted primarily to striated muscle cell lineages, in which increased mass of nuclear SRF was obligatory for alpha-actin gene transcription.
血清反应因子(SRF)基因在禽类胚胎肌肉谱系中的表达在激活α-肌动蛋白基因活性方面起着核心作用。在HH 6期的早期禽类胚胎中,SRF mRNA表达在神经沟、原条、侧板中胚层和亨氏结处呈现强烈定位,而在HH 8期时,在神经褶和体节中可见明显的SRF表达。SRF转录本在HH 9期胚胎的心前脏壁中胚层出现,并在HH 11期胚胎的心肌、体节和侧中胚层中检测到较高水平。SRF抗体染色显示,在发育中心脏的心肌和体节的肌节部分有显著的SRF蛋白积累。在培养的原代肌生成过程中,随着原代成肌细胞退出细胞周期,SRF转录本和核SRF蛋白含量增加约40倍,在骨骼肌α-肌动蛋白基因上调之前达到最高水平。一种显性负性SRF突变体SRFpm1,它抑制DNA结合,但不抑制单体SRF亚基的二聚化,在肌生成过程中阻断了骨骼肌α-肌动蛋白启动子-荧光素酶报告基因的转录激活。野生型SRF表达载体的共转染可逆转转录阻断,但其他成肌因子如MyoD和Mef-2C的表达不能挽救这种阻断。因此,SRF呈现出主要局限于横纹肌细胞谱系的胚胎表达模式,其中核SRF质量的增加对于α-肌动蛋白基因转录是必不可少的。