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Acampora, D., Mazan, S., Lallemand, Y., Avantaggiato, V., Maury, M., Simeone, A. and Br\236let, P (1995). Forebrain and midbrain regions are deleted in Otx2/ mutants due to a defective anterior neuroectoderm specification during gastrulation. Development 121, 3279-3290.[Abstract]

Acampora, D., Avantaggiato, V., Tuorto, F., Briata, P., Corte, G. and Simeone, A (1998). Visceral endoderm-restricted translation of Otx1 mediates recovery of Otx2 requirements for specification of anterior neural plate and normal gastrulation. Development 125, 5091-5104.[Abstract]

Ang, S. L. and Rossant, J (1994). HNF-3 beta is essential for node and notochord formation in mouse development. Cell 78, 561-574.[Medline]

Ang, S. L., Conlon, R. A., Jin, O. and Rossant, J (1994). Positive and negative signals from mesoderm regulate the expression of mouse Otx2 in ectoderm explants. Development 120, 2979-2989.[Abstract]

Ang, S. L., Jin, O., Rhinn, M., Daigle, N., Stevenson, L. and Rossant, J (1996). A targeted mouse Otx2 mutation leads to severe defects in gastrulation and formation of axial mesoderm and to deletion of rostral brain. Development 122, 243-252.[Abstract]

Arnold, S. J., Stappert, J., Bauer, A., Kispert, A., Herrmann, B. G. and Kemler, R (2000). Brachyury is a target gene of the Wnt/beta-catenin signaling pathway. Mech. Dev 91, 249-258.[Medline]

Bachvarova, R. F (1999). Establishment of anterior-posterior polarity in avian embryos. Curr. Opin. Genet. Dev 9, 411-416.[Medline]

Beddington, R. S. and Robertson, E. J (1999). Axis development and early asymmetry in mammals. Cell 96, 195-209.[Medline]

Bellipanni, G., Murakami, T., Doerre, O. G., Andermann, P. and Weinberg, E. S (2000). Expression of Otx homeodomain proteins induces cell aggregation in developing zebrafish embryos. Dev. Biol 223, 339-353.[Medline]

Belo, J. A., Bouwmeester, T., Leyns, L., Kertesz, N., Gallo, M., Follettie, M. and De Robertis, E. M (1997). Cerberus-like is a secreted factor with neutralizing activity expressed in the anterior primitive endoderm of the mouse gastrula. Mech. Dev 68, 45-57.[Medline]

Biben, C., Stanley, E., Fabri, L., Kotecha, S., Rhinn, M., Drinkwater, C., Lah, M., Wang, C. C., Nash, A., Hilton, D. et al (1998). Murine cerberus homologue mCer-1: a candidate anterior patterning molecule. Dev. Biol 194, 135-151.[Medline]

Bielinska, M., Narita, N. and Wilson, D. B (1999). Distinct roles for visceral endoderm during embryonic mouse development. Int. J. Dev. Biol 43, 183-205.[Medline]

Camus, A., Davidson, B. P., Billiards, S., Khoo, P., Rivera-Perez, J. A., Wakamiya, M., Behringer, R. R. and Tam, P. P (2000). The morphogenetic role of midline mesendoderm and ectoderm in the development of the forebrain and the midbrain of the mouse embryo. Development 127, 1799-1813.[Abstract]

Conlon, R. A. and Herrmann, B. G (1993). Detection of messenger RNA by in situ hybridization to postimplantation embryo whole mounts. Methods Enzymol 225, 373-383.[Medline]

Conlon, F. L., Lyons, K. M., Takaesu, N., Barth, K. S., Kispert, A., Herrmann, B. and Robertson, E. J (1994). A primary requirement for nodal in the formation and maintenance of the primitive streak in the mouse. Development 120, 1919-1928.[Abstract]

Constam, D. B. and Robertson, E. J (2000). Tissue-specific requirements for the proprotein convertase furin/SPC1 during embryonic turning and heart looping. Development 127, 245-254.[Abstract]

Coucouvanis, E. and Martin, G. R (1999). BMP signaling plays a role in visceral endoderm differentiation and cavitation in the early mouse embryo. Development 126, 535-546.[Abstract]

Crossley, P. H. and Martin, G. R (1995). The mouse Fgf8 gene encodes a family of polypeptides and is expressed in regions that direct outgrowth and patterning in the developing embryo. Development 121, 439-451.[Abstract]

Ding, J., Yang, L., Yan, Y. T., Chen, A., Desai, N., Wynshaw-Boris, A. and Shen, M. M (1998). Cripto is required for correct orientation of the anterior-posterior axis in the mouse embryo. Nature 395, 702-707.[Medline]

Downs, K. M. and Davies, T (1993). Staging of gastrulating mouse embryosby morphological landmarks in the dissecting microscope. Development 118, 1255-1266.[Abstract]

Dufort, D., Schwartz, L., Harpal, K. and Rossant, J (1998). The transcription factor HNF3beta is required in visceral endoderm for normal primitive streak morphogenesis. Development 125, 3015-3025.[Abstract]

Filosa, S., Rivera-Perez, J. A., Gomez, A. P., Gansmuller, A., Sasaki, H., Behringer, R. R. and Ang, S. L (1997). Goosecoid and HNF-3beta genetically interact to regulate neural tube patterning during mouse embryogenesis. Development 124, 2843-2854.[Abstract]

Foley, A. C., Skromne, I. and Stern, C. D (2000). Reconciling different models of forebrain induction and patterning: a dual role for the hypoblast. Development 127, 3839-3854.[Abstract]

Glinka, A., Wu, W., Delius, H., Monaghan, A. P., Blumenstock, C. and Niehrs, C (1998). Dickkopf-1 is a member of a new family of secreted proteins and functions in head induction. Nature 391, 357-362.[Medline]

Gradwohl, G., Fode, C. and Guillemot, F (1996). Restricted expression of a novel murine atonal-related bHLH protein in undifferentiated neural precursors. Dev. Biol 180, 227-241.[Medline]

Gritsman, K., Zhang, J., Cheng, S., Heckscher, E., Talbot, W. S. and Schier, A. F (1999). The EGF-CFC protein one-eyed pinhead is essential for nodal signaling. Cell 97, 121-132.[Medline]

Kimura, C., Yoshinaga, K., Tian, E., Suzuki, M., Aizawa, S. and Matsuo, I (2000). Visceral endoderm mediates forebrain development by suppressing posteriorizing signals. Dev. Biol 225, 304-321.[Medline]

Kothapalli, R., Buyuksal, I., Wu, S. Q., Chegini, N. and Tabibzadeh, S (1997). Detection of ebaf, a novel human gene of the transforming growth factor beta superfamily association of gene expression with endometrial bleeding. J. Clin. Invest 99, 2342-2350.[Medline]

Laird, P. W., Zijderveld, A., Linders, K., Rudnicki, M. A., Jaenisch, R. and Berns, A (1991). Simplified mammalian DNA isolation procedure. Nucleic Acids Res 19, 4293-4294.[Free Full Text]

Lawson, K. A., Meneses, J. J. and Pedersen, R. A (1986). Cell fate and cell lineage in the endoderm of the presomite mouse embryo, studied with an intracellular tracer. Dev. Biol 115, 325-339.[Medline]

Lawson, K. A. and Pedersen, R. A (1987). Cell fate, morphogenetic movement and population kinetics of embryonic endoderm at the time of germ layer formation in the mouse. Development 101, 627-652.[Abstract]

Lawson, K. A., Meneses, J. J. and Pedersen, R. A (1991). Clonal analysis of epiblast fate during germ layer formation in the mouse embryo. Development 113, 891-911.[Abstract]

Lawson, K. A. and Pedersen, R. A (1992). Clonal analysis of cell fate during gastrulation and early neurulation in the mouse. Ciba Found. Symp 165, 3-21.[Medline]

Liu, P., Wakamiya, M., Shea, M. J., Albrecht, U., Behringer, R. R. and Bradley, A (1999). Requirement for Wnt3 in vertebrate axis formation. Nat. Genet 22, 361-365.[Medline]

Martinez-Barbera, J. P., Clements, M., Thomas, P., Rodriguez, T., Meloy, D., Kioussis, D. and Beddington, R. S (2000). The homeobox gene Hex is required in definitive endodermal tissues for normal forebrain, liver and thyroid formation. Development 127, 2433-2445.[Abstract]

Matsuo, I., Kuratani, S., Kimura, C., Takeda, N. and Aizawa, S (1995). Mouse Otx2 functions in the formation and patterning of rostral head. Genes Dev 9, 2646-2658.[Abstract/Free Full Text]

Meno, C., Shimono, A., Saijoh, Y., Yashiro, K., Mochida, K., Ohishi, S., Noji, S., Kondoh, H. and Hamada, H (1998). lefty-1 is required for left-right determination as a regulator of lefty-2 and nodal. Cell 94, 287-297.[Medline]

Meno, C., Gritsman, K., Ohishi, S., Ohfuji, Y., Heckscher, E., Mochida, K., Shimono, A., Kondoh, H., Talbot, W. S., Robertson, E. J. et al (1999). Mouse Lefty2 and zebrafish antivin are feedback inhibitors of nodal signaling during vertebrate gastrulation. Mol. Cell 4, 287-298.

Mishina, Y., Suzuki, A., Ueno, N. and Behringer, R. R (1995). Bmpr encodes a type I bone morphogenetic protein receptor that is essential for gastrulation during mouse embryogenesis. Genes Dev 9, 3027-3037.[Abstract/Free Full Text]

Moens, C. B., Auerbach, A. B., Conlon, R. A., Joyner, A. L. and Rossant, J (1992). A targeted mutation reveals a role for N-myc in branching morphogenesis in the embryonic mouse lung. Genes Dev 6, 691-704.[Abstract/Free Full Text]

Norris, D. P. and Robertson, E. J (1999). Asymmetric and node-specific nodal expression patterns are controlled by two distinct cis-acting regulatory elements. Genes Dev 13, 1575-1588.[Abstract/Free Full Text]

Oulad-Abdelghani, M., Chazaud, C., Bouillet, P., Mattei, M. G., Dolle, P. and Chambon, P (1998). Stra3/lefty, a retinoic acid-inducible novel member of the transforming growth factor-beta superfamily. Int. J. Dev. Biol 42, 23-32.[Medline]

Pearce, J. J., Penny, G. and Rossant, J (1999). A mouse cerberus/Dan-related gene family. Dev. Biol 209, 98-110.[Medline]

Perea-Gomez, A., Shawlot, W., Sasaki, H., Behringer, R. R. and Ang, S (1999). HNF3beta and Lim1 interact in the visceral endoderm to regulate primitive streak formation and anterior-posterior polarity in the mouse embryo. Development 126, 4499-4511.[Abstract]

Rhinn, M., Dierich, A., Shawlot, W., Behringer, R. R., Le Meur, M. and Ang, S. L (1998). Sequential roles for Otx2 in visceral endoderm and neuroectoderm for forebrain and midbrain induction and specification. Development 125, 845-856.[Abstract]

Rhinn, M., Dierich, A., Le Meur, M. and Ang, S (1999). Cell autonomous and non-cell autonomous functions of Otx2 in patterning the rostral brain. Development 126, 4295-4304.[Abstract]

Russ, A. P., Wattler, S., Colledge, W. H., Aparicio, S. A., Carlton, M. B., Pearce, J. J., Barton, S. C., Surani, M. A., Ryan, K., Nehls, M. C., Wilson, V. and Evans, M. J (2000). Eomesodermin is required for mouse trophoblast development and mesoderm formation. Nature 404, 95-99.[Medline]

Saga, Y., Hata, N., Kobayashi, S., Magnuson, T., Seldin, M. F. and Taketo, M. M (1996). MesP1: a novel basic helix-loop-helix protein expressed in the nascent mesodermal cells during mouse gastrulation. Development 122, 2769-2778.[Abstract]

Saijoh, Y., Adachi, H., Sakuma, R., Yeo, C. Y., Yashiro, K., Watanabe, M., Hashiguchi, H., Mochida, K., Ohishi, S., Kawabata, M. et al (2000). Left-right asymmetric expression of lefty2 and nodal is induced by a signaling pathway that includes the transcription factor FAST2. Mol. Cell 5, 35-47.

Schier, A. F. and Shen, M. M (2000). Nodal signalling in vertebrate development. Nature 403, 385-389.[Medline]

Shawlot, W., Deng, J. M. and Behringer, R. R (1998). Expression of the mouse cerberus-related gene, Cerr1, suggests a role in anterior neural induction and somitogenesis. Proc. Natl. Acad. Sci. USA 95, 6198-6203.[Abstract/Free Full Text]

Shawlot, W., Wakamiya, M., Kwan, K. M., Kania, A., Jessell, T. M. and Behringer, R. R (1999). Lim1 is required in both primitive streak-derived tissues and visceral endoderm for head formation in the mouse. Development 126, 4925-4932.[Abstract]

Shimono, A. and Behringer, R. R (1999). Isolation of novel cDNAs by subtractions between the anterior mesendoderm of single mouse gastrula stage embryos. Dev. Biol 209, 369-380.[Medline]

Simeone, A., Acampora, D., Gulisano, M., Stornaiuolo, A. and Boncinelli, E (1992). Nested expression domains of four homeobox genes in developing rostral brain. Nature 358, 687-690.[Medline]

Simpson, E. H., Johnson, D. K., Hunsicker, P., Suffolk, R., Jordan, S. A. and Jackson, I. J (1999). The mouse Cer1 (Cerberus related or homologue) gene is not required for anterior pattern formation. Dev. Biol 213, 202-206.[Medline]

Steinberg, M.S. and Takeichi, M (1994). Experimental specification of cell sorting, tissue spreading, and specific spatial patterning by quantitative differences in cadherin expression. Proc. Natl. Acad. Sci. USA 91, 206-209.[Abstract/Free Full Text]

Streit, A., Berliner, A. J., Papanayotou, C., Sirulnik, A. and Stern, C. D (2000). Initiation of neural induction by FGF signalling before gastrulation. Nature 406, 74-78.[Medline]

Sun, X., Meyers, E. N., Lewandoski, M. and Martin, G. R (1999). Targeted disruption of Fgf8 causes failure of cell migration in the gastrulating mouse embryo. Genes Dev 13, 1834-1846.[Abstract/Free Full Text]

Tam, P. P., Steiner, K. A., Zhou, S. X. and Quinlan, G. A (1997). Lineage and functional analyses of the mouse organizer. Cold Spring Harb. Symp. Quant. Biol 62, 135-144.[Medline]

Tam, P. P. and Steiner, K. A (1999). Anterior patterning by synergistic activity of the early gastrula organizer and the anterior germ layer tissues of the mouse embryo. Development 126, 5171-5179.[Abstract]

Thisse, C. and Thisse, B (1999). Antivin, a novel and divergent member of the TGFsuperfamily, negatively regulates mesoderm induction. Development 126, 229-240.[Abstract]

Thomas, P. and Beddington, R (1996). Anterior primitive endoderm may be responsible for patterning the anterior neural plate in the mouse embryo. Curr. Biol 6, 1487-1496.[Medline]

Thomas, P. Q., Brown, A. and Beddington, R. S (1998). Hex: a homeobox gene revealing peri-implantation asymmetry in the mouse embryo and an early transient marker of endothelial cell precursors. Development 125, 85-94.[Abstract]

Varlet, I., Collignon, J. and Robertson, E. J (1997). nodal expression in the primitive endoderm is required for specification of the anterior axis during mouse gastrulation. Development 124, 1033-1044.[Abstract]

Vesque, C., Ellis, S., Lee, A., Szabo, M., Thomas, P., Beddington, R. and Placzek, M (2000). Development of chick axial mesoderm: specification of prechordal mesoderm by anterior endoderm-derived TGFbeta family signalling. Development 127, 2795-2809.[Abstract]

Weber, R. J., Pedersen, R. A., Wianny, F., Evans, M. J. and Zernicka-Goetz, M (1999). Polarity of the mouse embryo is anticipated before implantation. Development 126, 5591-5598.[Abstract]

Wilkinson, D. G., Bhatt, S. and Herrmann, B. G (1990). Expression pattern of the mouse T gene and its role in mesoderm formation. Nature 343, 657-659.[Medline]

Winnier, G., Blessing, M., Labosky, P. A. and Hogan, B. L (1995). Bone morphogenetic protein-4 is required for mesoderm formation and patterning in the mouse. Genes Dev 9, 2105-2116.[Abstract/Free Full Text]

Yamaguchi, T. P., Takada, S., Yoshikawa, Y., Wu, N. and McMahon, A. P (1999). T (Brachyury) is a direct target of Wnt3a during paraxial mesoderm specification. Genes Dev 13, 3185-3190.[Abstract/Free Full Text]

Zhou, X., Sasaki, H., Lowe, L., Hogan, B. L. and Kuehn, M. R (1993). Nodal is a novel TGF-beta-like gene expressed in the mouse node during gastrulation. Nature 361, 543-547.[Medline]




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