Shimizu T, Yamanaka Y, Ryu S L, Hashimoto H, Yabe T, Hirata T, Bae Y K, Hibi M, Hirano T
Division of Molecular Oncology (C7), Biomedical Research Center, Osaka University Graduate School of Medicine, 2-2 Yamada-oka, Suita, Osaka, Japan.
Mech Dev. 2000 Mar 1;91(1-2):293-303. doi: 10.1016/s0925-4773(99)00319-6.
In vertebrates, specification of the dorso-ventral axis requires Wnt signaling, which leads to formation of the Nieuwkoop center and the Spemann organizer (dorsal organizer), through the nuclear accumulation of beta-catenin. Zebrafish bozozok/dharma (boz) and squint (sqt), which encode a homeodomain protein and a Nodal-related protein, respectively, are required for the formation of the dorsal organizer. The zygotic expression of boz and sqt in the dorsal blastoderm and dorsal yolk syncytial layer (YSL) was dependent on the maternally derived Wnt signal, and their expression at the late blastula and early gastrula stages was dependent on the zygotic expression of their own genes. The dorsal organizer genes, goosecoid (gsc) and chordin (din), were ectopically expressed in wild-type embryos injected with boz or sqt RNA. The expression of gsc strictly depended on both boz and sqt while the expression of din strongly depended on boz but only partially depended on sqt and cyclops (cyc, another nodal-related gene). Overexpression of boz in embryos defective in Nodal signaling elicited the ectopic expression of din but not gsc and resulted in dorsalization, implying that boz could induce part of the organizer, independent of the Nodal proteins. Furthermore, boz; sqt and boz;cyc double mutants displayed a severely ventralized phenotype with anterior truncation, compared with the single mutants, and boz;sqt;cyc triple mutant embryos exhibited an even more severe phenotype, lacking the anterior neuroectoderm and notochord, suggesting that Boz/Dharma and the Nodal-related proteins cooperatively regulate the formation of the dorsal organizer.
在脊椎动物中,背腹轴的特化需要Wnt信号传导,该信号传导通过β-连环蛋白的核积累导致Nieuwkoop中心和Spemann组织者(背侧组织者)的形成。斑马鱼的bozozok/dharma(boz)和squint(sqt)分别编码一种同源结构域蛋白和一种Nodal相关蛋白,它们是背侧组织者形成所必需的。boz和sqt在背侧胚盘和背侧卵黄合胞体层(YSL)中的合子表达依赖于母源Wnt信号,并且它们在囊胚晚期和原肠胚早期阶段的表达依赖于其自身基因的合子表达。背侧组织者基因goosecoid(gsc)和chordin(din)在注射了boz或sqt RNA的野生型胚胎中异位表达。gsc的表达严格依赖于boz和sqt,而din的表达强烈依赖于boz,但仅部分依赖于sqt和cyclops(cyc,另一个Nodal相关基因)。在Nodal信号传导缺陷的胚胎中过表达boz会引发din的异位表达,但不会引发gsc的异位表达,并导致背化,这意味着boz可以独立于Nodal蛋白诱导部分组织者。此外,与单突变体相比,boz;sqt和boz;cyc双突变体表现出严重的腹化表型,伴有前部截断,而boz;sqt;cyc三突变体胚胎表现出更严重的表型,缺乏前神经外胚层和脊索,这表明Boz/Dharma和Nodal相关蛋白协同调节背侧组织者的形成。