Kumano G, Ezal C, Smith W C
Neuroscience Research Institute, University of California, Santa Barbara, California 93106, USA.
Dev Biol. 2001 Aug 15;236(2):465-77. doi: 10.1006/dbio.2001.0341.
Patterning of the Xenopus gastrula marginal zone in the axis running equatorially from the Spemann organizer-the so--called "dorsal/ventral axis"--has been extensively studied. It is now evident that patterning in the animal/vegetal axis also needs to be taken into consideration. We have shown that an animal/vegetal pattern is apparent in the marginal zone by midgastrulation in the polarized expression domains of Xenopus brachyury (Xbra) and Xenopus nodal-related factor 2 (Xnr2). In this report, we have followed cells expressing Xbra in the presumptive trunk and tail at the gastrula stage, and find that they fate to presumptive somite, but not to ventrolateral mesoderm of the tailbud embryo. From this, we speculate that the boundary between the Xbra- and Xnr2-expressing cells at gastrula corresponds to a future tissue boundary. In further experiments, we show that the level of mitogen-activated protein kinase (MAPK) activation is polarized along the animal/vegetal axis, with the Xnr2-expressing cells in the vegetal marginal zone having no detectable activated MAPK. We show that inhibition of MAPK activation in Xenopus animal caps results in the conversion of Xnr2 from a dorsal mesoderm inducer to a ventral mesoderm inducer, supporting a role for Xnr2 in induction of ventral mesoderm.
非洲爪蟾原肠胚边缘区在从施佩曼组织者沿赤道延伸的轴(即所谓的“背/腹轴”)上的模式形成已得到广泛研究。现在很明显,动物/植物轴上的模式形成也需要考虑在内。我们已经表明,在原肠胚中期,非洲爪蟾短尾相关蛋白(Xbra)和非洲爪蟾节点相关因子2(Xnr2)的极化表达域在边缘区呈现出明显的动物/植物模式。在本报告中,我们追踪了原肠胚阶段预定躯干和尾部中表达Xbra的细胞,发现它们分化为预定体节,但不会分化为尾芽胚胎的腹外侧中胚层。据此,我们推测原肠胚中表达Xbra和Xnr2的细胞之间的边界对应于未来的组织边界。在进一步的实验中,我们表明丝裂原活化蛋白激酶(MAPK)的激活水平沿动物/植物轴呈极化状态,植物边缘区表达Xnr2的细胞未检测到活化的MAPK。我们表明,抑制非洲爪蟾动物帽中的MAPK激活会导致Xnr2从背侧中胚层诱导因子转变为腹侧中胚层诱导因子,这支持了Xnr2在腹侧中胚层诱导中的作用。