Robertson Scott M, Medina Jessica, Oldenbroek Marieke, Lin Rueyling
Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA
Development. 2017 Feb 1;144(3):419-429. doi: 10.1242/dev.145391. Epub 2017 Jan 3.
The MS blastomere produces one-third of the body wall muscles (BWMs) in the C. elegans embryo. MS-derived BWMs require two distinct cell-cell interactions, the first inhibitory and the second, two cell cycles later, required to overcome this inhibition. The inductive interaction is not required if the inhibitory signal is absent. Although the Notch receptor GLP-1 was implicated in both interactions, the molecular nature of the two signals was unknown. We now show that zygotically expressed MOM-2 (Wnt) is responsible for both interactions. Both the inhibitory and the activating interactions require precise spatiotemporal expression of zygotic MOM-2, which is dependent upon two distinct Notch signals. In a Notch mutant defective only in the inductive interaction, MS-derived BWMs can be restored by preventing zygotic MOM-2 expression, which removes the inhibitory signal. Our results suggest that the inhibitory interaction ensures the differential lineage specification of MS and its sister blastomere, whereas the inductive interaction promotes the expression of muscle-specifying genes by modulating TCF and β-catenin levels. These results highlight the complexity of cell fate specification by cell-cell interactions in a rapidly dividing embryo.
在秀丽隐杆线虫胚胎中,MS卵裂球产生三分之一的体壁肌肉(BWM)。源自MS的BWM需要两种不同的细胞间相互作用,第一种是抑制性的,第二种是在两个细胞周期后,用于克服这种抑制作用。如果没有抑制信号,则不需要诱导性相互作用。尽管Notch受体GLP-1与这两种相互作用都有关联,但这两种信号的分子本质尚不清楚。我们现在表明,合子表达的MOM-2(Wnt)负责这两种相互作用。抑制性和激活性相互作用都需要合子MOM-2精确的时空表达,这依赖于两种不同的Notch信号。在仅在诱导性相互作用中存在缺陷的Notch突变体中,通过阻止合子MOM-2的表达可以恢复源自MS的BWM,这消除了抑制信号。我们的结果表明,抑制性相互作用确保了MS及其姐妹卵裂球的差异谱系特化,而诱导性相互作用通过调节TCF和β-连环蛋白水平来促进肌肉特异性基因的表达。这些结果突出了在快速分裂的胚胎中,细胞间相互作用决定细胞命运的复杂性。