Faro Ana, Boj Sylvia F, Ambrósio Raquel, van den Broek Olaf, Korving Jeroen, Clevers Hans
Hubrecht Institute for Developmental Biology and Stem Cell Research, Utrecht, The Netherlands.
Zebrafish. 2009 Mar;6(1):59-68. doi: 10.1089/zeb.2009.0580.
The Wnt pathway orchestrates cell fate decisions during embryonic development, organogenesis, and adult tissues homeostasis. T-cell factor (Tcf )/lymphoid enhancer-binding factor (Lef) transcription factors are the downstream effectors of canonical Wnt signaling. Upon Wnt signal activation, beta-catenin stabilizes and translocates to the nucleus, where it interacts with Tcfs activating the transcription of Wnt target genes. In the absence of Wnt, levels of stable beta-catenin are reduced by the action of adenomatous polyposis coli (Apc) and other cytoplasmic proteins. Mutations in Apc cause constitutive accumulation of beta-catenin and inappropriate activation of the Wnt pathway. apc(mcr/mcr) fish embryos show absence of expression of tissue-specific differentiation markers in the intestine, suggesting that inappropriate activation of Wnt signaling abrogates gut organogenesis. Which Tcf transcription factor mediates Wnt signaling during zebrafish gut organogenesis remains unclear. We studied the combined effect of loss of Tcf family members and Apc in the developing embryo. Tcf4 (tcf7l2) loss rescues the apc(mcr/mcr) phenotype in the intestine. Single depletion of Tcf1 (tcf7) and Tcf3 (tcf7l1a) function in an Apc mutant background had no effect on endoderm development. This study reveals that Tcf4 (tcf7l2) is the major effector of Wnt signaling in the intestine during zebrafish organogenesis.
Wnt信号通路在胚胎发育、器官形成以及成体组织稳态过程中协调细胞命运的决定。T细胞因子(Tcf)/淋巴细胞增强子结合因子(Lef)转录因子是经典Wnt信号传导的下游效应器。在Wnt信号激活后,β-连环蛋白稳定并转运至细胞核,在细胞核中它与Tcf相互作用,激活Wnt靶基因的转录。在没有Wnt的情况下,腺瘤性息肉病大肠杆菌(Apc)和其他细胞质蛋白的作用会降低稳定的β-连环蛋白水平。Apc中的突变会导致β-连环蛋白的组成型积累以及Wnt信号通路的不适当激活。apc(mcr/mcr)鱼胚胎在肠道中缺乏组织特异性分化标志物的表达,这表明Wnt信号的不适当激活会消除肠道器官形成。在斑马鱼肠道器官形成过程中,哪种Tcf转录因子介导Wnt信号传导仍不清楚。我们研究了Tcf家族成员缺失和Apc在发育中的胚胎中的联合作用。Tcf4(tcf7l2)缺失挽救了肠道中的apc(mcr/mcr)表型。在Apc突变背景下,Tcf1(tcf7)和Tcf3(tcf7l1a)的单基因缺失对内胚层发育没有影响。这项研究表明,在斑马鱼器官形成过程中,Tcf4(tcf,7l2)是肠道中Wnt信号传导的主要效应器。