Nofziger D, Miyamoto A, Lyons K M, Weinmaster G
Department of Biological Chemistry, UCLA School of Medicine, Box 951737, Los Angeles, CA 90095-1737, USA.
Development. 1999 Apr;126(8):1689-702. doi: 10.1242/dev.126.8.1689.
Notch signal transduction regulates expression of downstream genes through the activation of the DNA-binding protein Su(H)/CBF1. In Drosophila most of Notch signaling requires Su(H); however, some Notch-dependent processes occur in the absence of Su(H) suggesting that Notch signaling does not always involve activation of this factor. Using constitutively active forms of Notch lacking CBF1-interacting sequences we identified a Notch signaling pathway that inhibits myogenic differentiation of C2C12 myoblasts in the absence of CBF1 activation. Here we show that ligand-induced Notch signaling suppresses myogenesis in C2C12 myoblasts that express a dominant negative form of CBF1, providing additional evidence for CBF1-independent Notch signal transduction. Surprisingly mutant forms of Notch deficient in CBF1 activation are unable to antagonize MyoD activity, despite the fact that they inhibit myogenesis. Moreover, Notch-induced antagonism of MyoD requires CBF1 suggesting that the CBF1-dependent pathway mediates a cell-type-specific block in the myogenic program. However, Notch signaling in the absence of CBF1 activation blocks both myogenesis and osteogenesis, indicative of a general block in cellular differentiation. Taken together our data provide evidence for two distinct Notch signaling pathways that function to block differentiation at separate steps during the process of myogenesis in C2C12 myoblasts.
Notch信号转导通过激活DNA结合蛋白Su(H)/CBF1来调节下游基因的表达。在果蝇中,大多数Notch信号传导需要Su(H);然而,一些Notch依赖性过程在没有Su(H)的情况下也会发生,这表明Notch信号传导并不总是涉及该因子的激活。使用缺乏CBF1相互作用序列的组成型活性Notch形式,我们鉴定出一条Notch信号通路,该通路在没有CBF1激活的情况下抑制C2C12成肌细胞的肌源性分化。在这里,我们表明配体诱导的Notch信号传导抑制表达CBF1显性负性形式的C2C12成肌细胞中的肌生成,为不依赖CBF1的Notch信号转导提供了额外证据。令人惊讶的是,缺乏CBF1激活的Notch突变形式尽管抑制肌生成,但却无法拮抗MyoD活性。此外,Notch诱导的对MyoD的拮抗作用需要CBF1,这表明依赖CBF1的途径在肌源性程序中介导细胞类型特异性阻滞。然而,在没有CBF1激活的情况下,Notch信号传导会同时阻断肌生成和成骨,这表明细胞分化存在普遍阻滞。综上所述,我们的数据为两条不同的Notch信号通路提供了证据,它们在C2C12成肌细胞肌生成过程的不同步骤中发挥作用来阻断分化。