Alexander J, Rothenberg M, Henry G L, Stainier D Y
Programs in Developmental Biology and Human Genetics, Department of Biochemistry and Biophysics, University of California at San Francisco, San Francisco, California 94143-0448, USA.
Dev Biol. 1999 Nov 15;215(2):343-57. doi: 10.1006/dbio.1999.9441.
The cellular and molecular mechanisms that regulate endoderm development in vertebrates have only recently begun to be explored. Here we show that the zebrafish locus casanova plays an early and essential role in this process. casanova mutants lack a gut tube and do not express any molecular markers of endoderm differentiation. The early endodermal expression of genes such as axial, gata5, and fkd2 does not initiate in casanova mutants, indicating that the endoderm is defective from the onset of gastrulation. Mosaic analysis demonstrates that casanova functions cell autonomously within the endodermal progenitors. We also report the isolation of a zebrafish homologue of Mixer, a gene important for early endoderm formation in Xenopus. casanova does not encode zebrafish Mixer, and mixer expression is normal in casanova mutants, indicating that casanova acts downstream of, or parallel to, mixer to promote endoderm formation. We further find that the forerunner cells, a specialized group of noninvoluting dorsal mesendodermal cells, do not form in casanova mutants. Studies of casanova mutants do not support an important role for the forerunner cells in either dorsal axis or tail development, as has been previously proposed. In addition, although different populations of mesodermal precursors are generated normally in casanova mutants, morphogenetic defects in the heart, vasculature, blood, and kidney are apparent, suggesting a possible role for the endoderm in morphogenesis of these organs.
调节脊椎动物内胚层发育的细胞和分子机制直到最近才开始被探索。在此我们表明,斑马鱼基因座casanova在这一过程中发挥着早期且关键的作用。casanova突变体缺乏肠管,并且不表达任何内胚层分化的分子标记。诸如axial、gata5和fkd2等基因的早期内胚层表达在casanova突变体中无法启动,这表明内胚层从原肠胚形成开始就存在缺陷。镶嵌分析表明,casanova在内胚层祖细胞内自主发挥作用。我们还报告了非洲爪蟾中对早期内胚层形成重要的基因Mixer的斑马鱼同源物的分离。casanova并不编码斑马鱼的Mixer,并且mixer在casanova突变体中的表达是正常的,这表明casanova在mixer的下游或与其平行发挥作用以促进内胚层形成。我们进一步发现,先驱细胞,即一群特殊的不内卷的背侧中内胚层细胞,在casanova突变体中并不形成。对casanova突变体的研究并不支持先驱细胞在背轴或尾部发育中发挥重要作用,正如之前所提出的那样。此外,尽管casanova突变体中正常产生了不同群体的中胚层前体细胞,但心脏、血管、血液和肾脏中的形态发生缺陷很明显,这表明内胚层在这些器官的形态发生中可能发挥作用。