Laboratory for Vertebrate Axis Formation, RIKEN Center for Developmental Biology, Hyogo 650-0047, Japan.
Development. 2010 Mar;137(6):923-33. doi: 10.1242/dev.046425. Epub 2010 Feb 11.
In amphibian and teleost embryos, the dorsal determinants (DDs) are believed to be initially localized to the vegetal pole and then transported to the prospective dorsal side of the embryo along a microtubule array. The DDs are known to activate the canonical Wnt pathway and thereby promote the expression of genes that induce the dorsal organizer. Here, by identifying the locus of the maternal-effect ventralized mutant tokkaebi, we show that Syntabulin, a linker of the kinesin I motor protein, is essential for dorsal determination in zebrafish. We found that syntabulin mRNA is transported to the vegetal pole during oogenesis through the Bucky ball (Buc)-mediated Balbiani body-dependent pathway, which is necessary for establishment of animal-vegetal (AV) oocyte polarity. We demonstrate that Syntabulin is translocated from the vegetal pole in a microtubule-dependent manner. Our findings suggest that Syntabulin regulates the microtubule-dependent transport of the DDs, and provide evidence for the link between AV and dorsoventral axis formation.
在两栖类和硬骨鱼类胚胎中,背侧决定因子(DDs)被认为最初定位于植物极,然后沿着微管阵列运输到胚胎的预期背侧。DDs 已知会激活经典的 Wnt 途径,从而促进诱导背侧组织者的基因的表达。在这里,通过鉴定母体效应性腹侧化突变体 tokaebi 的基因座,我们表明,微管动力蛋白 I 的连接蛋白 Syntabulin 对于斑马鱼的背侧决定是必不可少的。我们发现,在卵子发生过程中,syntabulin mRNA 通过 Buckyb 球(Buc)介导的巴尔比尼体(Balbiani body)依赖性途径运输到植物极,这对于建立动物-植物(AV)卵母细胞极性是必需的。我们证明 Syntabulin 从植物极以微管依赖性方式易位。我们的研究结果表明,Syntabulin 调节 DDs 的微管依赖性运输,并为 AV 和背腹轴形成之间的联系提供了证据。