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JOURNAL ARTICLES
Expression cloning of a Xenopus T-related gene (Xombi) involved in mesodermal patterning and blastopore lip formation
K.D. Lustig, K.L. Kroll, E.E. Sun, M.W. Kirschner
Development 1996 122: 4001-4012;
K.D. Lustig
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K.L. Kroll
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E.E. Sun
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M.W. Kirschner
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Summary

We have used a functional assay to identify a putative T-box transcription factor (Xombi) that has the ability to induce sites of invagination in the ectoderm of Xenopus embryos that resemble the blastopore lip. Maternal Xombi transcript is first localized to the oocyte's vegetal cortex and cytoplasm, early sources of mesoderm and endoderm-inducing signals. Soon after zygotic transcription begins, there is a wave of Xombi expression, beginning in dorsal mesoderm and then extending to lateral and ventral mesoderm, that precedes and parallels blastopore lip formation at the border between the mesoderm and endoderm. Transcripts encoding brachyury, Xwnt8 and goosecoid colocalize with Xombi transcripts within the marginal zone; ectopic expression of Xombi induces expression of all three mesodermal genes. In ectodermal explants, Xombi expression is induced by the secreted mesoderm inducers activinA, activinB, Xnrl and eFGF, and by brachyury, another Xenopus T-box containing gene. The time course and location of Xombi expression, its biological activities and the partial dependence of Xombi expression and blastopore lip formation on fibroblast growth factor (FGF) signaling suggest that Xombi contributes to a traveling wave of morphogenesis and differentiation during Xenopus gastrulation.

Reference

    1. Amaya E.,
    2. Musci T. J.,
    3. Kirschner M. W.
    (1991) Expression of a dominant negative mutant of the FGF receptor disrupts mesoderm formation in Xenopus embryos. Cell 66, 257–270
    OpenUrlCrossRefPubMedWeb of Science
    1. Amaya E.,
    2. Stein P. A.,
    3. Musci T. J.,
    4. Kirschner M. W.
    (1993) FGF signalling in the early specification of mesoderm in Xenopus. Development 118, 477–487
    OpenUrlAbstract
    1. Blumberg B.,
    2. Wright C. V. E.,
    3. De Robertis E. M.,
    4. Cho K. W. Y.
    (1991) Organizer-specific homeogenes in Xenopus laevis embryos. Science 253, 194–196
    OpenUrlAbstract/FREE Full Text
    1. Bollag R. J.,
    2. Siegfried Z.,
    3. Cebra-Thomas J. A.,
    4. Garvey N.,
    5. Davison E. M.,
    6. Silver L. M.
    (1994) An ancient family of embryonically expressed mouse genes sharing a conserved protein motif with the T locus. Nature Genet 7, 383–389
    OpenUrlCrossRefPubMedWeb of Science
    1. Christian J. L.,
    2. McMahon J. A.,
    3. McMahon A. P.,
    4. Moon R. T.
    (1991) Xwnt-8, a Xenopus Wnt-1/int-1-related gene responsive to mesoderm-inducing growth factors, may play a role in ventral mesodermal patterning during embryogenesis. Development 111, 1045–1055
    OpenUrlAbstract/FREE Full Text
    1. Cornell R. A.,
    2. Kimelman D.
    (1994) Activin-mediated mesoderm induction requires FGF. Development 120, 453–462
    OpenUrlAbstract
    1. Gamer L. W.,
    2. Wright C. V. E.
    (1995) Autonomous endodermal determination in Xenopus: regulation of expression of pancratic gene Xlhbox6. Dev. Biol 171, 240–251
    OpenUrlCrossRefPubMedWeb of Science
    1. Gonzalez F. A.,
    2. Raden D. L.,
    3. Davis R. J.
    (1991) Identification of substrate recognition determinants for humnan ERK1 and ERK2 protein kinases. J. Biol. Chem 266, 22159–22163
    OpenUrlAbstract/FREE Full Text
    1. Guger K. A.,
    2. Gumbiner B. M.
    (1995) -catenin has Wnt-like activity and mimics the Nieuwkoop signaling center in Xenopus dorsal-ventral patterning. Dev. Biol 172, 115–125
    OpenUrlCrossRefPubMedWeb of Science
    1. Hardin J.,
    2. Keller R.
    (1988) The behaviour and function of bottle cells during gastrulation of Xenopus laevis. Development 103, 211–230
    OpenUrlAbstract
    1. Harland R.M.
    (1994) The transforming growth factor beta family and induction of the vertebrate mesoderm: bone morphogenetic proteins are ventral inducers. Proc. Natl. Acad. Sci. USA 91, 10243–10246
    OpenUrlFREE Full Text
    1. Heberlein U.,
    2. Wolff T.,
    3. Rubin G. M.
    (1993) The TGF beta homolog dpp and the segment polarity gene hedgehog are required for propagation of a morphogenetic wave in the Drosophila embryo. Cell 75, 913–926
    OpenUrlCrossRefPubMedWeb of Science
    1. Henry G. L.,
    2. Brivanlou I. H.,
    3. Kessler D. S.,
    4. Hemmati-Brivanlou A.,
    5. Melton D. A.
    (1996) TGF-signals and a prepattern in Xenopuslaevis endodermal development. Development 122, 1007–1015
    OpenUrlAbstract
    1. Isaacs H. V.,
    2. Pownall M. E.,
    3. Slack J. M. W.
    (1994) eFGF regulates Xbra expression during Xenopus gastrulation. EMBO J 13, 4469–4481
    OpenUrlPubMedWeb of Science
    1. Jones C. M.,
    2. Kuehn M. R.,
    3. Hogan B. L. M.,
    4. Smith J. C.,
    5. Wright C. V. E.
    (1995) Nodal-related signals induce axial mesoderm and dorsalize mesoderm during gastrulation. Development 121, 3651–3662
    OpenUrlAbstract
    1. Kimelman D.,
    2. Christian J. L.,
    3. Moon R. T.
    (1992) Synergistic principles of development: overlapping patterning systems in Xenopus mesoderm induction. Development 116, 1–9
    OpenUrlAbstract
    1. Kispert A.,
    2. Hermann B. G.
    (1993) The brachyury gene encodes a novel DNA binding protein. EMBO J 12, 4898–9
    OpenUrlPubMedWeb of Science
    1. Kispert A.,
    2. Hermann B. G.,
    3. Leptin M.,
    4. Reuter R.
    (1994) Homologs of the mouse brachyury gene are involved in the specification of posterior terminal structures in Drosophila, Tribolium and Locusta. Genes and Dev 8, 2137–2150
    OpenUrlAbstract/FREE Full Text
    1. Lemaire P.,
    2. Garrett N.,
    3. Gurdon J. B.
    (1995) Expression cloning of Siamois, a Xenopus homeobox gene expressed in dorsal-vegetal cells of blastulae and able to induce a complete secondary axis. Cell 81, 85–94
    OpenUrlCrossRefPubMedWeb of Science
    1. LaBonne C.,
    2. Whitman M.
    (1994) Mesoderm induction by activin requires FGF-mediated intracellular signals. Development 120, 463–472
    OpenUrlAbstract
    1. Lustig K. D.,
    2. Kirschner M. W.
    (1995) Use of an oocyte expression assay to reconstitute inductive signaling. Proc. Natl. Acad. Sci. USA 92, 6234–6238
    OpenUrlAbstract/FREE Full Text
    1. Lustig K. D.,
    2. Kroll K.,
    3. Sun E.,
    4. Ramos R.,
    5. Elmendorf H.,
    6. Kirschner M. W.
    (1996) A Xenopus nodal-related gene that acts in synergy with noggin to induce complete secondary axis and notochord formation. Development 122, 3275–3282
    OpenUrlAbstract
    1. Ma C.,
    2. Zhou Y.,
    3. Beachy P. A.,
    4. Moses K.
    (1993) The segment polarity gene hedgehog is required for progression of the morphogenetic furrow in the developing Drosophila eye. Cell 75, 927–938
    OpenUrlCrossRefPubMedWeb of Science
    1. Pflugfelder G. O.,
    2. Roth H.,
    3. Poeck B.,
    4. Kerscher S.,
    5. Schwarz H.,
    6. Jonschker B.,
    7. Heisenberg M.
    (1992) The lethal(l)optomotor-blind gene of Drosophila melanogaster is a major organizer of optic lobe development: isolation and characterization of the gene. Proc. Natl. Acad. Sci. USA 89, 1199–1203
    OpenUrlAbstract/FREE Full Text
    1. Slack J. M.
    (1994) Inducing factors in Xenopus early embryos. Curr. Biol 4, 116–126
    OpenUrlCrossRefPubMedWeb of Science
    1. Smith J. C.,
    2. Price B. M. J.,
    3. Green J. B. A.,
    4. Weigel D.,
    5. Herrmann B. G.
    (1991) Expression of a Xenopus homolog of brachyury (T) is an immediate-early response to mesoderm induction. Cell 67, 79–87
    OpenUrlCrossRefPubMedWeb of Science
    1. Smith W. C.,
    2. Harland R. M.
    (1991) Injected Xwnt-8 RNA acts early in Xenopus embryos to promote formation of a vegetal dorsalizing center. Cell 67, 753–865
    OpenUrlCrossRefPubMedWeb of Science
    1. Smith W. C.,
    2. Harland R. M.
    (1992) Expression cloning of noggin, a new dorsalizing factor localized to the Spemann organizer in Xenopus embryos. Cell 70, 829–840
    OpenUrlCrossRefPubMedWeb of Science
    1. Smith W. C.,
    2. McKendry R.,
    3. Ribisi S. J.,
    4. Harland R. M.
    (1995) A nodal-related gene defines a physical and functional domain within the Spemann organizer. Cell 82, 37–46
    OpenUrlCrossRefPubMedWeb of Science
    1. Suzuki M.
    (1989) SPXX, a frequent sequence motif in gene regulatory proteins. J. Mol. Biol 207, 61–84
    OpenUrlCrossRefPubMedWeb of Science
    1. Thomsen G.,
    2. Woolf T.,
    3. Whitman M.,
    4. Sokol S.,
    5. Vaughan J.,
    6. Vale W.,
    7. Melton D. A.
    (1990) Activins are expressed early in Xenopus embryogenesis and can induce axial mesoderm and anterior structures. Cell 63, 485–493
    OpenUrlCrossRefPubMedWeb of Science
    1. Turner D. L.,
    2. Weintraub H.
    (1994) Expression of achaete-scutehomolog 3 in Xenopus embryos converts ectodermal cells to a neural fate. Genes Dev 8, 1434–1447
    OpenUrlAbstract/FREE Full Text
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JOURNAL ARTICLES
Expression cloning of a Xenopus T-related gene (Xombi) involved in mesodermal patterning and blastopore lip formation
K.D. Lustig, K.L. Kroll, E.E. Sun, M.W. Kirschner
Development 1996 122: 4001-4012;
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JOURNAL ARTICLES
Expression cloning of a Xenopus T-related gene (Xombi) involved in mesodermal patterning and blastopore lip formation
K.D. Lustig, K.L. Kroll, E.E. Sun, M.W. Kirschner
Development 1996 122: 4001-4012;

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