Maeda Reo, Hozumi Shunya, Taniguchi Kiichiro, Sasamura Takeshi, Murakami Ryutaro, Matsuno Kenji
Department of Biological Science and Technology, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278-8510, Japan.
Mech Dev. 2007 Mar;124(3):204-17. doi: 10.1016/j.mod.2006.12.001. Epub 2006 Dec 15.
Many animals have genetically determined left-right (LR) asymmetry of their internal organs. The midline structure of vertebrate embryos has important roles in LR asymmetric development both as the signaling center for LR asymmetry and as a barrier to inappropriate LR signaling across the midline. However, in invertebrates, the functions of the midline in LR asymmetric development are unknown. To elucidate these roles, we studied the involvement of single-minded (sim) in the LR asymmetry of the Drosophila embryonic gut, which develops in a stereotypic, asymmetric manner. sim encodes a bHLH/PAS transcription factor that is required for the development of the ventral midline structure. Here we report that sim was expressed in the midline of the foregut and hindgut primordia. The handedness of the embryonic gut was affected in sim mutant embryos and in embryos overexpressing sim. However, midline-derived events, which involve Slit/Robo and EGFr signaling and direct the development of the tissues adjacent to the midline, did not affect the laterality of this organ, suggesting a crucial role for the midline itself in LR asymmetry. In the sim mutants, the midline structures of the embryonic anal pad were deformed. The mis-expression of sim in the anal-pad primordium induced LR defects. We also found that different portions of the embryonic gut require sim functions at different times for normal LR asymmetry. Our results suggest that the midline structures are involved in the LR asymmetric development of the Drosophila embryonic gut.
许多动物的内脏器官存在由基因决定的左右(LR)不对称性。脊椎动物胚胎的中线结构在LR不对称发育中起着重要作用,既是LR不对称的信号中心,也是阻止中线两侧不适当LR信号传导的屏障。然而,在无脊椎动物中,中线在LR不对称发育中的功能尚不清楚。为了阐明这些作用,我们研究了单 minded(sim)在果蝇胚胎肠道LR不对称中的作用,果蝇胚胎肠道以一种刻板、不对称的方式发育。sim编码一种bHLH/PAS转录因子,是腹侧中线结构发育所必需的。在此我们报告,sim在前肠和后肠原基的中线表达。sim突变体胚胎和过表达sim的胚胎中,胚胎肠道的手性受到影响。然而,涉及Slit/Robo和EGFr信号传导并指导中线相邻组织发育的中线衍生事件,并不影响该器官的左右不对称性,这表明中线本身在LR不对称中起关键作用。在sim突变体中,胚胎肛门垫的中线结构变形。sim在肛门垫原基中的错误表达诱导了LR缺陷。我们还发现,胚胎肠道的不同部分在不同时间需要sim功能来实现正常的LR不对称。我们的结果表明,中线结构参与了果蝇胚胎肠道的LR不对称发育。