Ganguly Atish, Jiang Jin, Ip Y Tony
Program in Molecular Medicine, University of Massachusetts Medical School, Worcester, MA 01605, USA.
Development. 2005 Aug;132(15):3419-29. doi: 10.1242/dev.01903. Epub 2005 Jun 29.
The maternal Toll signaling pathway sets up a nuclear gradient of the transcription factor Dorsal in the early Drosophila embryo. Dorsal activates twist and snail, and the Dorsal/Twist/Snail network activates and represses other zygotic genes to form the correct expression patterns along the dorsoventral axis. An essential function of this patterning is to promote ventral cell invagination during mesoderm formation, but how the downstream genes regulate ventral invagination is not known. We show here that wntD is a novel member of the Wnt family. The expression of wntD is activated by Dorsal and Twist, but the expression is much reduced in the ventral cells through repression by Snail. Overexpression of WntD in the early embryo inhibits ventral invagination, suggesting that the de-repressed WntD in snail mutant embryos may contribute to inhibiting ventral invagination. The overexpressed WntD inhibits invagination by antagonizing Dorsal nuclear localization, as well as twist and snail expression. Consistent with the early expression of WntD at the poles in wild-type embryos, loss of WntD leads to posterior expansion of nuclear Dorsal and snail expression, demonstrating that physiological levels of WntD can also attenuate Dorsal nuclear localization. We also show that the de-repressed WntD in snail mutant embryos contributes to the premature loss of snail expression, probably by inhibiting Dorsal. Thus, these results together demonstrate that WntD is regulated by the Dorsal/Twist/Snail network, and is an inhibitor of Dorsal nuclear localization and function.
母体Toll信号通路在早期果蝇胚胎中建立了转录因子Dorsal的核梯度。Dorsal激活twist和snail,并且Dorsal/Twist/Snail网络激活和抑制其他合子基因,以沿背腹轴形成正确的表达模式。这种模式形成的一个重要功能是在中胚层形成过程中促进腹侧细胞内陷,但下游基因如何调节腹侧内陷尚不清楚。我们在此表明,wntD是Wnt家族的一个新成员。wntD的表达由Dorsal和Twist激活,但通过Snail的抑制作用,其在腹侧细胞中的表达大大降低。在早期胚胎中过表达WntD会抑制腹侧内陷,这表明在蜗牛突变体胚胎中去抑制的WntD可能有助于抑制腹侧内陷。过表达的WntD通过拮抗Dorsal核定位以及twist和snail的表达来抑制内陷。与野生型胚胎中WntD在两极的早期表达一致,WntD的缺失导致核Dorsal和snail表达的后向扩展,表明WntD的生理水平也可以减弱Dorsal核定位。我们还表明,蜗牛突变体胚胎中去抑制的WntD可能通过抑制Dorsal导致snail表达过早丧失。因此,这些结果共同表明WntD受Dorsal/Twist/Snail网络调控,并且是Dorsal核定位和功能的抑制剂。