Jenny Fabian H, Basler Konrad
Institute of Molecular Life Sciences, University of Zurich, Zurich, Switzerland.
PLoS One. 2016 Dec 28;11(12):e0166862. doi: 10.1371/journal.pone.0166862. eCollection 2016.
The helicases human DDX3 and Drosophila Belle (Bel) are part of a well-defined subfamily of the DEAD-box helicases. Individual subfamily-members perform a myriad of functions in nuclear and cytosolic RNA metabolism. It has also been reported that DDX3X is involved in cell signaling, including IFN-α and IFN-β inducing pathways upon viral infection as well as in Wnt signaling. Here we used a collection of EMS-induced bel alleles recovered from a Wingless (Wg) suppressor screen to analyze the role of the Drosophila homolog of DDX3 in Wg/Wnt signaling. These EMS alleles, as well as a P-element induced null allele and RNAi-mediated knock down of bel, all suppressed the phenotype of ectopic Wg signaling in the eye. However, they did not affect the expression of known Wg target genes like senseless, Distalless or wingful/Notum. Ectopic Wg signaling in eye imaginal discs induces apoptosis by increasing grim expression. Mutations in bel revert grim expression to wild-type levels. Together, these results indicate that Bel does not function as a core component in the Drosophila Wg pathway, and that mutations affecting its helicase function suppress the effects of ectopic Wg signaling downstream of the canonical pathway.
解旋酶人类DDX3和果蝇Belle(Bel)是DEAD盒解旋酶中一个明确亚家族的成员。各个亚家族成员在细胞核和细胞质RNA代谢中发挥着无数功能。也有报道称DDX3X参与细胞信号传导,包括病毒感染时的IFN-α和IFN-β诱导途径以及Wnt信号传导。在这里,我们使用从无翅(Wg)抑制子筛选中获得的一系列EMS诱导的bel等位基因,来分析DDX3的果蝇同源物在Wg/Wnt信号传导中的作用。这些EMS等位基因,以及一个P元素诱导的无效等位基因和RNAi介导的bel敲低,均抑制了眼睛中异位Wg信号传导的表型。然而,它们并不影响已知Wg靶基因如无意义、远端缺失或翅满/Notum的表达。眼睛成虫盘中的异位Wg信号传导通过增加严峻表达来诱导细胞凋亡。bel中的突变将严峻表达恢复到野生型水平。总之,这些结果表明Bel在果蝇Wg途径中不作为核心成分起作用,并且影响其解旋酶功能的突变抑制了经典途径下游异位Wg信号传导的影响。