Maeda Tomoji, Chapman Deborah L, Stewart Alexandre F R
Cardiovascular Institute, School of Medicine, University of Pittsburgh, Pennsylvania 15213, USA.
J Biol Chem. 2002 Dec 13;277(50):48889-98. doi: 10.1074/jbc.M206858200. Epub 2002 Oct 9.
Expression of many skeletal muscle-specific genes depends on TEF-1 (transcription enhancer factor-1) and MEF2 transcription factors. In Drosophila, the TEF-1 homolog Scalloped interacts with the cofactor Vestigial to drive differentiation of the wing and indirect flight muscles. Here, we identify three mammalian vestigial-like genes, Vgl-1, Vgl-2, and Vgl-3, that share homology in a TEF-1 interaction domain. Vgl-1 and Vgl-3 transcripts are enriched in the placenta, whereas Vgl-2 is expressed in the differentiating somites and branchial arches during embryogenesis and is skeletal muscle-specific in the adult. During muscle differentiation, Vgl-2 mRNA levels increase and Vgl-2 protein translocates from the cytoplasm to the nucleus. In situ hybridization revealed co-expression of Vgl-2 with myogenin in the differentiating muscle of embryonic myotomes but not in newly formed somites prior to muscle differentiation. Like Vgl-1, Vgl-2 interacts with TEF-1. In addition, we show that Vgl-2 interacts with MEF2 in a mammalian two-hybrid assay and that Vgl-2 selectively binds to MEF2 in vitro. Co-expression of Vgl-2 with MEF2 markedly co-activates an MEF2-dependent promoter through its MEF2 element. Overexpression of Vgl-2 in MyoD-transfected 10T(1/2) cells markedly increased myosin heavy chain expression, a marker of terminal muscle differentiation. These results identify Vgl-2 as an important new component of the myogenic program.
许多骨骼肌特异性基因的表达依赖于TEF-1(转录增强因子-1)和MEF2转录因子。在果蝇中,TEF-1的同源物扇贝蛋白与辅因子残翅蛋白相互作用,以驱动翅膀和间接飞行肌的分化。在此,我们鉴定出三个哺乳动物残翅样基因,Vgl-1、Vgl-2和Vgl-3,它们在TEF-1相互作用结构域中具有同源性。Vgl-1和Vgl-3转录本在胎盘中富集,而Vgl-2在胚胎发育过程中的分化体节和鳃弓中表达,在成体中是骨骼肌特异性的。在肌肉分化过程中,Vgl-2 mRNA水平升高,Vgl-2蛋白从细胞质转运到细胞核。原位杂交显示,Vgl-2与肌细胞生成素在胚胎肌节的分化肌肉中共同表达,但在肌肉分化前的新形成体节中不表达。与Vgl-1一样,Vgl-2与TEF-1相互作用。此外,我们发现在哺乳动物双杂交试验中Vgl-2与MEF2相互作用,并且Vgl-2在体外选择性地与MEF2结合。Vgl-2与MEF2共表达通过其MEF2元件显著共激活MEF2依赖性启动子。在MyoD转染的10T(1/2)细胞中过表达Vgl-2显著增加了肌球蛋白重链的表达,这是终末肌肉分化的一个标志物。这些结果确定Vgl-2是肌生成程序的一个重要新组分。