Palmer William Hunt, Jia Dongyu, Deng Wu-Min
Department of Biological Science, Florida State University, Tallahassee, United States.
Elife. 2014 Dec 8;3:e04415. doi: 10.7554/eLife.04415.
The Notch pathway is integrated into numerous developmental processes and therefore is fine-tuned on many levels, including receptor production, endocytosis, and degradation. Notch is further characterized by a twofold relationship with its Delta-Serrate (DSL) ligands, as ligands from opposing cells (trans-ligands) activate Notch, whereas ligands expressed in the same cell (cis-ligands) inhibit signaling. We show that cells without both cis- and trans-ligands can mediate Notch-dependent developmental events during Drosophila oogenesis, indicating ligand-independent Notch activity occurs when the receptor is free of cis- and trans-ligands. Furthermore, cis-ligands can reduce Notch activity in endogenous and genetically induced situations of elevated trans-ligand-independent Notch signaling. We conclude that cis-expressed ligands exert their repressive effect on Notch signaling in cases of trans-ligand-independent activation, and propose a new function of cis-inhibition which buffers cells against accidental Notch activity.
Notch信号通路整合到众多发育过程中,因此在许多层面上受到精细调控,包括受体产生、内吞作用和降解。Notch的进一步特征在于它与其Delta-Serrate(DSL)配体存在双重关系,来自相对细胞的配体(反式配体)激活Notch,而在同一细胞中表达的配体(顺式配体)抑制信号传导。我们发现,在果蝇卵子发生过程中,既没有顺式配体也没有反式配体的细胞能够介导Notch依赖的发育事件,这表明当受体没有顺式和反式配体时会发生不依赖配体的Notch活性。此外,在反式配体非依赖性Notch信号传导升高的内源性和基因诱导情况下,顺式配体可以降低Notch活性。我们得出结论,在反式配体非依赖性激活的情况下,顺式表达的配体对Notch信号传导发挥抑制作用,并提出了顺式抑制的新功能,即缓冲细胞免受意外的Notch活性影响。