Yasutake Junichi, Inohaya Keiji, Kudo Akira
Department of Biological Information, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8501, Japan.
Mech Dev. 2004 Jul;121(7-8):883-94. doi: 10.1016/j.mod.2004.03.008.
Medaka twist, a basic helix-loop-helix (bHLH) transcription factor, is expressed in the sclerotome during embryogenesis. We previously established a line of twist-EGFP transgenic medaka, whose EGFP expression is regulated by the twist promoter; therefore, we could observe the behavior of sclerotomal cells in vivo. In the transgenic medaka embryos, EGFP-positive sclerotomal cells migrated dorsally around the notochord and the neural tube, where at a later stage the vertebral column would be formed. This finding strongly suggests that twist-expressing sclerotomal cells participate in vertebral column formation in medaka. To clarify the function of twist gene in the sclerotome, we performed knockdown analysis of twist by using two kinds of morpholino antisense oligonucleotides targeted against twist (MO1 and MO2). Both the MO1 and MO2 morphants exhibited absence of neural arches, which are bilaterally paired, dorsomedially oriented bones on the dorsal aspect of the centrum. In addition, MO2, which blocks translation of only endogenous twist mRNA in the twist-EGFP transgenic medaka, did not affect the migration pattern of EGFP-positive cells, revealing that the migration of sclerotome-derived cells were normal in the absence of twist gene function. These results demonstrate that medaka twist functions in vertebral column formation by regulating the sclerotomal cell differentiation.
青鳉鱼twist基因是一种基本的螺旋-环-螺旋(bHLH)转录因子,在胚胎发育过程中于体节中表达。我们之前建立了一个twist-EGFP转基因青鳉鱼品系,其EGFP表达受twist启动子调控;因此,我们能够在体内观察体节细胞的行为。在转基因青鳉鱼胚胎中,EGFP阳性的体节细胞围绕脊索和神经管向背侧迁移,在稍后阶段此处将形成脊柱。这一发现有力地表明,表达twist的体节细胞参与了青鳉鱼脊柱的形成。为了阐明twist基因在体节中的功能,我们使用了两种针对twist的吗啉代反义寡核苷酸(MO1和MO2)进行twist的敲低分析。MO1和MO2突变体均表现出神经弓缺失,神经弓是椎体背侧成对的、背内侧方向的骨骼。此外,在twist-EGFP转基因青鳉鱼中,仅阻断内源性twist mRNA翻译的MO2并不影响EGFP阳性细胞的迁移模式,这表明在缺乏twist基因功能的情况下,体节来源细胞的迁移是正常的。这些结果表明,青鳉鱼twist基因通过调节体节细胞分化在脊柱形成中发挥作用。