Sugimura I, Adachi-Yamada T, Nishi Y, Nishida Y
Division of Biological Science, Graduate School of Science, Nagoya University, Japan.
Dev Growth Differ. 2000 Jun;42(3):237-48. doi: 10.1046/j.1440-169x.2000.00509.x.
A Drosophila gene, Dwhn (Drosophila whn-like), encoding a putative transcriptional regulator with a DNA binding domain similar to that of mouse Winged-helix nude (Whn) was cloned. Analyses of the phenotypes produced by a hypomorphic mutation and transgene expression suggested a role in cell fate decision during the differentiation of the compound eye, wing veins and bristles. During embryonic development, Dwhn expression started ubiquitously followed by more restricted expression in striking contrast to the expression patterns of other Drosophila forkhead (fkh) family genes whose local expression correlate well to their roles as local homeotic genes. This broad expression may correspond to the multiple defects in embryos homozygous for strong alleles, such as defects in the formation of central and peripheral nervous systems, germ band retraction, head involution, and dorsal closure. The DNA binding specificity of Dwhn differed from that of Whn despite the strong sequence conservation in the DNA binding domain. Dwhn is the first invertebrate Whn-like transcriptional regulator, and should provide insights into the basic functions and evolution of the whn family genes.
克隆了一个果蝇基因Dwhn(类果蝇Whn),它编码一种假定的转录调节因子,其DNA结合结构域与小鼠翼状螺旋裸蛋白(Whn)的相似。对一个低表达突变和转基因表达所产生的表型分析表明,它在复眼、翅脉和刚毛分化过程中的细胞命运决定中起作用。在胚胎发育过程中,Dwhn的表达开始时是普遍存在的,随后表达范围变得更加局限,这与其他果蝇叉头(fkh)家族基因的表达模式形成鲜明对比,其他果蝇叉头家族基因的局部表达与其作为局部同源异型基因的作用密切相关。这种广泛的表达可能与强等位基因纯合胚胎中的多种缺陷相对应,例如中枢和外周神经系统形成缺陷、胚带退缩、头部内卷和背闭合缺陷。尽管Dwhn的DNA结合结构域在序列上有很强的保守性,但其DNA结合特异性与Whn不同。Dwhn是第一个无脊椎动物类Whn转录调节因子,应该能为深入了解Whn家族基因的基本功能和进化提供线索。