Postigo A A, Ward E, Skeath J B, Dean D C
Division of Molecular Oncology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Mol Cell Biol. 1999 Oct;19(10):7255-63. doi: 10.1128/MCB.19.10.7255.
zfh-1 is a member of the zfh family of proteins, which all contain zinc finger and homeodomains. The roles and mechanisms of action of most family members are still unclear. However, we have shown previously that another member of the family, the vertebrate ZEB protein, is a transcriptional repressor that binds E box sequences and inhibits myotube formation in cell culture assays. zfh-1 is downregulated in Drosophila embryos prior to myogenesis. Embryos with zfh-1 loss-of-function mutation show alterations in the number and position of embryonic somatic muscles, suggesting that zfh-1 could have a regulatory role in myogenesis. However, nothing is known about the nature or mechanism of action of zfh-1. Here, we demonstrate that zfh-1 is a transcription factor that binds E box sequences and acts as an active transcriptional repressor. When zfh-1 expression was maintained in the embryo beyond its normal temporal pattern of downregulation, the differentiation of somatic but not visceral muscle was blocked. One potential target of zfh-1 in somatic myogenesis could be the myogenic factor mef2. mef2 is known to be regulated by the transcription factor twist, and we show here that zfh-1 binds to sites in the mef2 upstream regulatory region and inhibits twist transcriptional activation. Even though there is little sequence similarity in the repressor domains of ZEB and zfh-1, we present evidence that zfh-1 is the functional homologue of ZEB and that the role of these proteins in myogenesis is conserved from Drosophila to mammals.
zfh-1是zfh蛋白家族的成员之一,该家族所有成员均含有锌指结构和同源异型结构域。大多数家族成员的作用和作用机制仍不清楚。然而,我们之前已经表明,该家族的另一个成员,脊椎动物ZEB蛋白,是一种转录抑制因子,它能结合E盒序列并在细胞培养实验中抑制肌管形成。在果蝇胚胎中,zfh-1在肌发生之前表达下调。具有zfh-1功能缺失突变的胚胎在胚胎体壁肌肉的数量和位置上出现改变,这表明zfh-1可能在肌发生中具有调节作用。然而,关于zfh-1的性质或作用机制一无所知。在此,我们证明zfh-1是一种转录因子,它能结合E盒序列并作为一种活性转录抑制因子发挥作用。当zfh-1在胚胎中的表达超过其正常的下调时间模式时,体壁肌肉而非内脏肌肉的分化被阻断。zfh-1在体壁肌发生中的一个潜在靶点可能是肌源性因子mef2。已知mef2受转录因子twist的调控,我们在此表明zfh-1能结合mef2上游调控区域的位点并抑制twist的转录激活。尽管ZEB和zfh-1的抑制结构域几乎没有序列相似性,但我们提供的证据表明zfh-1是ZEB的功能同源物,并且这些蛋白质在肌发生中的作用从果蝇到哺乳动物都是保守的。