Mogi Kazue, Goto Madoka, Ohno Eri, Azumi Yoshitaka, Takeuchi Shigeo, Toyoizumi Ryuji
Research Institute for Integrated Sciences and Department of Biological Sciences, Kanagawa University, Tsuchiya, Hiratsuka, Japan.
Int J Dev Biol. 2003 Feb;47(1):15-29. doi: 10.1387/13.
A variety of TGF-beta-related ligands regulate the left-right asymmetry of vertebrates but the involvement of TGF-betas in left-right specification has not been reported. We assessed whether TGF-beta signaling is involved in the left-right specification of Xenopus post-gastrula embryos by microinjecting Xenopus TGF-beta5 protein into the left or right flank of neurula-tailbud embryos. Injection on the right side of neurulae caused left-right reversal of the internal organs in 93% of the embryos, while injection on the left side caused less than 5% left-right reversal. Expression of Xenopus nodal related-1 (Xnr-1 ), Xenopus antivin and Xenopus Pitx2, which are normally expressed on the left, was unaltered by the left-side injection. In contrast, right-side injection into neurulae induced the expression of these genes predominantly on the right side. Right-side injection into tailbud embryos caused bilateral expression of these handed genes. Time course analysis of asymmetric gene expression revealed that Xnr-1 could be induced by TGF-beta5 at late neurula stage, while antivin and Pitx2 could be induced by TGF-beta5 at the latertail bud stage. Injection of the antisense morpholino oligonucleotide against Xenopus TGF-beta5 into the left dorsal blastomere inhibited the normal left-handed expression of Xnr-1 and Pitx2, and caused the organ reversal in the injected embryos. These results suggest that normal left-right balance of endogenous TGF-beta5 signaling in the neurula embryo may be needed to determine the laterality of the asymmetric genes and to generate the correct left-right axis.
多种与转化生长因子β(TGF-β)相关的配体调节脊椎动物的左右不对称性,但尚未有关于TGF-β参与左右不对称决定的报道。我们通过将非洲爪蟾TGF-β5蛋白显微注射到神经胚-尾芽期胚胎的左侧或右侧,评估TGF-β信号是否参与非洲爪蟾原肠胚后期胚胎的左右不对称决定。在神经胚右侧注射导致93%的胚胎出现内脏左右反转,而在左侧注射导致左右反转的胚胎不到5%。正常情况下在左侧表达的非洲爪蟾节点相关-1(Xnr-1)、非洲爪蟾抗维甲酸蛋白和非洲爪蟾Pitx2的表达,不受左侧注射的影响。相反,向神经胚右侧注射诱导这些基因主要在右侧表达。向尾芽期胚胎右侧注射导致这些左右特异性基因双侧表达。不对称基因表达的时间进程分析表明,Xnr-1可在神经胚晚期被TGF-β5诱导,而抗维甲酸蛋白和Pitx2可在尾芽后期被TGF-β5诱导。将针对非洲爪蟾TGF-β5的反义吗啉代寡核苷酸注射到左侧背侧卵裂球中,抑制了Xnr-1和Pitx2正常的左侧表达,并导致注射胚胎出现器官反转。这些结果表明,神经胚期胚胎内源性TGF-β5信号的正常左右平衡可能是决定不对称基因的左右性和产生正确左右轴所必需的。