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编码一种T-盒蛋白的Tbx24,在斑马鱼体节分割突变体融合体节中发生了突变。

Tbx24, encoding a T-box protein, is mutated in the zebrafish somite-segmentation mutant fused somites.

作者信息

Nikaido Masataka, Kawakami Atsushi, Sawada Atsushi, Furutani-Seiki Makoto, Takeda Hiroyuki, Araki Kazuo

机构信息

Domestic Research Fellow, Japan Science and Technology Corporation, Tamaki, Watarai, Mie, 519-0423, Japan.

出版信息

Nat Genet. 2002 Jun;31(2):195-9. doi: 10.1038/ng899. Epub 2002 May 20.

Abstract

Somites are fundamental structures within the paraxial mesoderm of the vertebrate embryo that give rise to the vertebrae and muscle of the trunk and tail. Studies of knockout mice and gene expression analyses have shown that the Notch pathway is crucial in establishing the reiterative pattern of somites. A large-scale screen in zebrafish previously identified five mutants that show abnormalities in somite boundary formation. Four have essentially the same phenotype, with posterior somite defects and neuronal hyperplasia; recent work has suggested that genes affected in these mutants encode components of the Notch signaling cascade. The fifth mutant, fused somites (fss), shows a different phenotype characterized by complete lack of somite formation along the entire antero-posterior axis. Gene expression and phenotypic analyses in mutant embryos have implicated Fss in somite formation independent of Notch signaling, suggesting the presence of a new pathway regulating somite boundary formation. We show here that the fss gene encodes a T-box transcription factor that is expressed in intermediate to anterior presomitic mesoderm (PSM) and is involved in PSM maturation.

摘要

体节是脊椎动物胚胎中轴旁中胚层内的基本结构,可发育为躯干和尾部的椎骨及肌肉。对基因敲除小鼠的研究和基因表达分析表明,Notch信号通路在建立体节的重复模式中至关重要。此前在斑马鱼中进行的大规模筛选鉴定出五个在体节边界形成方面表现异常的突变体。其中四个具有基本相同的表型,即后部体节缺陷和神经元增生;最近的研究表明,这些突变体中受影响的基因编码Notch信号级联的组成部分。第五个突变体,融合体节(fss),表现出不同的表型,其特征是沿整个前后轴完全缺乏体节形成。对突变胚胎的基因表达和表型分析表明,Fss在不依赖Notch信号的体节形成中起作用,这表明存在一条调节体节边界形成的新途径。我们在此表明,fss基因编码一种T-box转录因子,该因子在前体节中胚层(PSM)的中前部表达,并参与PSM的成熟。

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