Takács-Vellai Krisztina, Vellai Tibor, Chen Estella B, Zhang Yue, Guerry Frédéric, Stern Michael J, Müller Fritz
Department of Genetics, Eötvös Loránd University, Budapest, H-1117, Hungary.
Dev Biol. 2007 Feb 15;302(2):661-9. doi: 10.1016/j.ydbio.2006.09.049. Epub 2006 Oct 4.
The Notch signaling pathway controls growth, differentiation and patterning in divergent animal phyla; in humans, defective Notch signaling has been implicated in cancer, stroke and neurodegenerative disorders. Despite its developmental and medical significance, little is known about the factors that render cells to become competent for Notch signaling. Here we show that during vulval development in the nematode Caenorhabditis elegans the HOX protein LIN-39 and its EXD/PBX-like cofactor CEH-20 are required for LIN-12/Notch-mediated lateral signaling that specifies the 2 degrees vulval cell fate. Inactivation of either lin-39 or ceh-20 resulted in the misspecification of 2 degrees vulval cells and suppressed the multivulva phenotype of lin-12(n137) gain-of-function mutant animals. Furthermore, both LIN-39 and CEH-20 are required for the expression of basal levels of the genes encoding the LIN-12/Notch receptor and one of its ligands in the vulval precursor cells, LAG-2/Delta/Serrate, rendering them competent for the subsequent lin-12/Notch induction events. Our results suggest that the transcription factors LIN-39 and CEH-20, which function at the bottom of the RTK/Ras and Wnt pathways in vulval induction, serve as major integration sites in coordinating and transmitting signals to the LIN-12/Notch cascade to regulate vulval cell fates.
Notch信号通路控制着不同动物门的生长、分化和模式形成;在人类中,Notch信号缺陷与癌症、中风和神经退行性疾病有关。尽管其在发育和医学方面具有重要意义,但对于使细胞能够对Notch信号产生反应的因素却知之甚少。在这里,我们表明,在秀丽隐杆线虫的阴门发育过程中,HOX蛋白LIN-39及其EXD/PBX样辅因子CEH-20是LIN-12/Notch介导的侧向信号传导所必需的,该信号传导决定了二级阴门细胞命运。lin-39或ceh-20的失活导致二级阴门细胞的错误指定,并抑制了lin-12(n137)功能获得型突变动物的多阴门表型。此外,LIN-39和CEH-20都是阴门前体细胞中编码LIN-12/Notch受体及其配体之一LAG-2/Delta/Serrate的基因基础水平表达所必需的,使它们能够对随后的lin-12/Notch诱导事件产生反应。我们的结果表明,转录因子LIN-39和CEH-20在阴门诱导的RTK/Ras和Wnt通路的下游发挥作用,作为主要的整合位点,协调并将信号传递到LIN-12/Notch级联反应,以调节阴门细胞命运。