spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Reifers, F.
Right arrow Articles by Brand, M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Reifers, F.
Right arrow Articles by Brand, M.
Amaya, E., Musci, T. J. and Kirschner, M. W (1991). Expression of a dominant negative mutant of the FGF receptor disrupts mesoderm formation in Xenopus embryos. Cell 66, 257-270.[Medline]

Andree, B., Duprez, D., Vorbusch, B., Arnold, H.-H. and Brand, T (1998). BMP-2 induces ectopic expression of cardiac lineage markers and interferes with somite formation in chicken embryos. Mech. Dev 70, 119-131.[Medline]

Arman, E., Haffner-Krausz, R., Chen, Y., Heath, J. and Lonai, P (1995). Targeted disruption of fibroblast growth factor (FGF) receptor 2 suggests a role for FGF signaling in pregastrulation mammalian development. Proc. Natl. Acad. Sci. USA 95, 5082-5087.

Azpiazu, N. and Frasch, M (1993). tinman and bagpipe : two homeobox genes that determine cell fates in the dorsal mesoderm of Drosophila. Genes Dev 7, 1325-1340.[Abstract/Free Full Text]

Baird, A (1994). Fibroblast growth factors: activities and significance of non-neurotrophin growth factors. Curr. Opin. Neurobiol 4, 78-86.[Medline]

Beiman, M., Shilo, B.-Z. and Volk, T (1996). Heartless, a Drosophila FGFreceptor homolog, is essential for cell migration and establishment of several mesodermal lineages. Genes Dev 10, 2993-3002.[Abstract/Free Full Text]

Blunt, A. G., Lawshe, A., Cunningham, M. L., Seto, M. L., Ornitz, D.M.and MacArthur, C. A (1997). Overlapping expression and redundant activation of mesenchymal fibroblast growth factor (FGF) receptors by alternatively spliced FGF-8 ligands. J. Biol. Chem 272, 3733-3738.[Abstract/Free Full Text]

Bodmer, R (1993). The gene tinman is required for specification of the heart and visceral muscles in Drosophila. Development 118, 719-729.[Abstract]

Bodmer, R. and Venkatesh, T. V (1998). Heart development in Drosophila and Vertebrates: conservation of molecular mechanisms. Dev. Genet 22, 181-186.[Medline]

Bour, B. A., O'Brien, M. A., Lockwood, W. L., Goldstein, E. S., Bodmer, R., Taghert, P. H., Abmayr, S. M. and Nguyen, H. T (1995). Drosophila MEF2, a transcription factor that is essential for myogenesis. Genes Dev 9, 730-741.[Abstract/Free Full Text]

Brand, M., Heisenberg, C.-P., Jiang, Y.-J., Beuchle, D., Lun, K., Furutani-Seiki, M., Granato, M., Haffter, P., Hammerschmidt, M., Kane, D. et al (1996). Mutations in zebrafish genes affecting the formation of the boundary between midbrain and hindbrain. Development 123, 179-190.[Abstract]

Brand, T., Andree, B., Schneider, A., Buchberger, A. and Arnold, H.-H (1997). Chicken Nkx2-8, a novel homeobox gene expressed in early heart and foregut development. Mech. Dev 64, 53-59.[Medline]

Chen, J.-N. and Fishman, M. C (1996). Zebrafish tinman homolog demarcates the heart field and initiates myocardial differentiation. Development 122, 3809-3816.[Abstract]

Cleaver, O. B., Patterson, K. D. and Krieg, P. A (1996). Overexpression of the tinman -related genes XNkx2.5 and XNkx2.3 in Xenopus embryos results in myocardial hyperplasia. Development 122, 3549-3556.[Abstract]

Colvin, J. S., Bohne, B. A., Harding, G. W., McEwen, D. G. and Ornitz, D. M (1996). Skeletal overgrowth and deafness in mice lacking fibroblast growth factor receptor 3. Nat. Genet 12, 390-397.[Medline]

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]

Deng, C. X., Wynshaw-Boris, A., Shen, M. M., Daugherty, C., Ornitz, D.M. and Leder, P (1994). Murine FGFR-1 is required for early postimplantation growth and axial organisation. Genes Dev 8, 3045-3057.[Abstract/Free Full Text]

DeRuiter, M. C., Poelmann, R. E., VanderPlas-de Vries, I., Mentink, M. M. T. and Gittenberger-deGroot, A. C (1992). The development of the myocardium and endocardium in mouse embryos. Anat. Embryol 185, 461-473.[Medline]

Dono, R., Texido, G., Dussel, R., Ehmke, H. and Zeller, R (1998). Impaired cerebral cortex development and blood pressure regulation in FGF-2-deficient mice. EMBO J 17, 4213-4225.[Medline]

Dornseifer, P., Takke, C. and Campos-Ortega, J. A (1997). Overexpresion of a zebrafish homologue of the Drosophila neurogenic gene Delta perturbs differentiation of primary neurons and somite development. Mech. Dev 63, 159-171.[Medline]

Durocher, D., Charron, F., Warren, R., Schwartz, R. J. and Nemer, M (1997). The cardiac transcription factors Nkx2-5 and GATA-4 are mutual cofactors. EMBO J 16, 5687-5696.[Medline]

Durocher, D. and Nemer, M (1998). Combinatorial interactions regulating cardiac transcription. Dev. Genet 22, 250-262.[Medline]

Edmondson, D. G., Lyons, G. E., Martin, J. F. and Olson, E. N (1994). Mef2 gene expression marks the cardiac and skeletal muscle lineages during mouse embryogenesis. Development 120, 1251-1263.[Abstract]

Engelmann, G. L., Dionne, C. A. and Jaye, M. C (1993). Acidic fibrobalst growth factor and heart development. Role in myocyte proliferation and capillary angiogenesis. Circ. Res 72, 7-19.[Abstract/Free Full Text]

Feldman, B., Poueymirou, W., Papaioannou, V. E., DeChiara, T. M. and Goldfarb, M (1995). Requirement for FGF-4 for postimplantation mouse development. Science 267, 246-249.[Abstract/Free Full Text]

Fernig, D. G. and Gallagher, J. T (1994). Fibroblast growth factors and their receptors: an information network controlling tissue growth, morphogenesis and repair. Prog. Growth Factor Res 5, 353-377.[Medline]

Fishman, M. C. and Chien, K. R (1997). Fashioning the vertebrate heart: earliest embryonic decisions. Development 124, 2099-2117.[Abstract]

Fouquet, B., Weinstein, B. M., Serlucca, F. C. and Fishman, M. C (1997). Vessel patterning in the embryo of the zebrafish: guidance by notochord. Dev. Biol 183, 37-48.[Medline]

Frasch, M (1995). Induction of visceral and cardiac mesoderm by ectodermal DPP in the early Drosophila embryo. Nature 374, 464-467.[Medline]

Furthauer, M., Thisse, C. and Thisse, B (1997). A role for Fgf-8 in the dorsoventral patterning of the zebrafish gastrula. Development 124, 4253-4264.[Abstract]

Gajeweski, K., Kim, Y., Lee, Y. M., Olson, E. N. and Schulz, R. A (1997). D-mef2 is a target for Tinman activation during Drosophila heart development. EMBO J 16, 515-522.[Medline]

Gisselbrecht, S., Skeath, J. B., Doe, C. Q. and Michelson, A. M (1996). heartless encodes a fibroblast growth factor receptor (DFR1/DFGF-R2) involved in the directional migration of early mesodermal cells in the Drosophila embryo. Genes Dev 10, 3003-3017.[Abstract/Free Full Text]

Goldstein, A. M. and Fishman, M. C (1998). Notochord regulates cardiac lineage in zebrafish embryos. Dev. Biol 201, 247-252.[Medline]

Grepin, C., Nemer, G. and Nemer, M (1997). Enhanced cardiogenesis in embryonic stem cells overexpressing the GATA-4 transcription factor. Development 124, 2387-2395.[Abstract]

Haffter, P., Granato, M., Brand, M., Mullins, M. C., Hammerschmidt, M., Kane, D. A., Odenthal, J., van Eeden, F. J. M., Jiang, Y.-J., Heisenberg, C.-P (1996). The identification of genes with unique and essential functions in the development of the zebrafish, Danio rerio. Development 123, 1-36.[Abstract]

Hartung, H., Feldman, B., Lovec, H., Coulier, F., Birnbaum, D. and Goldfarb, M (1997). Murine FGF-12 and FGF-13: expression in embryonic nervous system, connective tissue and heart. Mech. Dev 64, 31-39.[Medline]

Harvey, R. P (1996). NK-2 homeobox genes and heart development. Dev. Biol 178, 203-216.[Medline]

Heikinheimo, M., Scandrett, J. M. and Wilson, D. B (1994). Localisation of transcription factor GATA-4 to regions of the mouse embryo involved in cardiac development. Dev. Biol 164, 361-373.[Medline]

Hogan, B. L. M (1996). Bone morphogenetic proteins in development. Curr. Opin. Genet. Dev 6, 432-438.[Medline]

Jiang, Y. and Evans, T (1996). The XenopusGATA4/5/6 genes are associated with cardiac specification and can regulate cardiac-specific transcription during embryogenesis. Dev. Biol 174, 258-270.[Medline]

Johnson, D. E. and Williams, L. T (1993). Structural and functional diversity in the Fgf receptor multigene family. Adv. Cancer Res 60, 1-41.[Medline]

Kelley, C., Blumberg, H., Zon, L. I. and Evans, T (1993). GATA-4 is a novel transcription factor expressed in endocardium of the developing heart. Development 118, 817-827.[Abstract]

Kimmel, C. B., Ballard, W. W., Kimmel, S. R., Ullmann, B. and Schilling, T. F (1995). Stages of embryonic development of the zebrafish. Dev. Dyn 203, 253-310.[Medline]

Kishimoto, Y., Lee, K.-H., Zon, L., Hammerschmidt, M. and Schulte-Merker, S (1997). The molecular nature of zebrafish swirl : BMP2 function is essential during early dorsoventral patterning. Development 124, 4457-4466.[Abstract]

Komuro, I. and Izumo, S (1993). Csx : a murine homeobox-containing gene specifically expressed in the developing heart. Proc. Natl. Acad. Sci. USA 90, 8145-8149.[Abstract/Free Full Text]

Kuo, C. T., Morrisey, E. E., Anandappa, R., Sigrist, K., Lu, M. M., Parmacek, M. S., Soudais, C. and Leiden, J. M (1997). GATA4 transcription factor is required for ventral morphogenesis and heart tube formation. Genes Dev 11, 1048-1060.[Abstract/Free Full Text]

Kuwada, J. Y., Bernhardt, R. R. and Chitnis, A. B (1990). Pathfinding by identified growth cones in the spinal cord of zebrafish embryos. J. Neurosci 10, 1299-1308.[Abstract]

Laverriere, A. C., MacNiell, C., Mueller, C., Poelmann, R. E., Burch, J. B. E. and Evans, T (1994). GATA-4/5/6: a subfamily of three transcription factors transcribed in the developing heart and gut. J. Biol. Chem 269, 23177-23184.[Abstract/Free Full Text]

Lee, K.-H., Xu, Q. and Breitbart, R. E (1996). A new tinman -related gene, nkx2.7 , anticipates the expression of nkx2.5 and nkx2.3 in zebrafish heart and pharyngeal endoderm. Dev. Biol 180, 722-731.[Medline]

Liao, W., Bisgrove, B. W., Sawyer, H., Hug, B., Bell, B., Peters, K., Grunwald, D. J. and Stainier, D. Y. R (1997). The zebrafish gene clocheacts upstream of a flk-1 homologue to regulate endothelial cell differentiation. Development 124, 319-389.

Lien, C.-L., Wu, C., Mercer, B., Webb, R., Richardson, J. A. and Olson, E. N (1999). Control of early cardiac.specific transcription of Nkx2-5 by a GATA-dependent enhancer. Development 126, 75-84.[Abstract]

Lilly, B., Galewsky, S., Firulli, A. B., Schulz, R. A. and Olsone, E. N (1994). D-MEF2: a MADS box transcription factor expressed in differentiating mesoderm and muscle cell lineages during Drosophila embryogenesis. Proc. Natl. Acad. Sci. USA 91, 5662-5666.[Abstract/Free Full Text]

Lilly, B., Zhao, B., Ranganayakulu, G., Paterson, B. M., R.A., S. and Olson, E. N (1995). Requirement of MADS domain transcription factor D-MEF2 for muscle formation in Drosophila. Science 267, 688-693.[Abstract/Free Full Text]

Lin, Q., Schwarz, J., Bucana, C. and Olson, E. N (1997). Control of mouse cardiac morphogenesis and myogenesis by transcription factor MEF-2C. Science 276, 1404-1407.[Abstract/Free Full Text]

Lints, T. J., Parsons, L. M., Hartley, L., Lyons, I. and Harvey, R. P (1993). Nkx-2.5 : a novel murine homeobox gene expressed in early heart progenitor cells and their myogenic descendants. Development 119, 419-431.[Abstract]

Lough, J., Barron, M., Brogley, M., Sugi, Y., Bolender, D. L. and Zhu, X (1996). Combined BMP-2 and FGF-4, but neither factor alone, induces cardiogenesis in non-precardiac embryonic mesoderm. Dev. Biol 178, 198-202.[Medline]

Lyons, G. E (1996). Vertebrate heart development. Curr. Opin. Genet. Dev 6, 454-460.[Medline]

Lyons, I., Parsons, L. M., Hartley, L., Li, R., Andrews, J. E., Robb, L. and Harvey, R. P (1995). Myogenic and morphogenetic defects in the heart tubes of murine embryos lacking the homeobox gene Nkx2.5. Genes Dev 9, 1654-1666.[Abstract/Free Full Text]

Lyons, K. M., Pelton, R. W. and Hogan, B. L. M (1989). Patterns of expression of murine Vgr-1 and BMP-2a RNA suggest that transforming growth factor-b-like genes coordinately regulate aspects of embryonic development. Genes Dev 3, 1657-1668.[Abstract/Free Full Text]

Lyons, K. M., Pelton, R. W. and Hogan, B. L. M (1990). Organogenesis and pattern formation in the mouse: RNA dsitribution patterns suggest a role for Bone Morphogenetic Protein-2A (BMP-2A). Development 109, 833-844.[Abstract/Free Full Text]

MacArthur, C. A., Lawshe, A., Xu, L., Santos-Ocampo, S., Heikinheimo, M., Chellaiah, A. T. and Ornitz, D. M (1995). FGF-8 isoforms activate receptor splice forms that are expressed in mesenchymal regions of mouse development. Development 121, 3603-3613.[Abstract]

Mason, I. J., Fuller-Pace, F., Smith, R. and Dickson, C (1994). FGF-7 (keratinocyte growth factor) expression during mouse development suggests roles in myogenesis, forebrain regionalisation and epithelial-mesenchymal interactions. Mech. Dev 45, 15-30.[Medline]

Meyers, E. N., Lewandowski, M. and Martin, G. R (1998). An Fgf8 mutant allelic series generated by Cre-and Flp-mediated recombination. Nat. Genet 18, 136-142.[Medline]

Michelson, A. M., Gisselbrecht, S., Baek, K.-H. and Buff, E. M (1998). Dual functions of the heartless fibroblast growth factor receptor in the development of Drosophila embryonic mesoderm. Dev. Genet 22, 212-229.[Medline]

Miyake, A., Konishi, M., Martin, F. H., Hernday, N. A., Ozaki, K., Yamamoto, S., Mikami, T., Arakawa, T. and Itoh, N (1998). Structure and expression of a novel member, FGF-16, of the fibroblast growth factor family. Biochem. Biophys. Res. Commun 243, 148-152.[Medline]

Mohammadi, M., McMahon, G., Sun, L., Tang, C., Hirth, P., Yeh, B. K., Hubbard, S. R. and Schlessinger, J (1997). Structures of the tyrosine kinase domain of fibroblast growth factor receptor in complex with inhibitors. Science 276, 955-960.[Abstract/Free Full Text]

Mohun, T. and Sparrow, D (1997). Early steps in vertebrate cardiogenesis. Curr. Opin. Genet. Dev 7, 628-633.[Medline]

Molkentin, J. D., Firulli, A. B., Black, B. L., Martin, J. F., Hustad, C. M., Copeland, N., Jenkins, N., Lyons, G. and Olson, E. N (1996). MEF2B is a potent trans activator expressed in early myogenic lineages. Mol. Cell Biol 16, 3814-3824.[Abstract]

Molkentin, J. D., Lin, Q., Duncan, S. A. and Olson, E. N (1997). Requirement of the transcription factor GATA4 for heart tube formation and ventral morphogenesis. Genes Dev 11, 1061-1072.[Abstract/Free Full Text]

Narita, N., Bielinska, M. and Wilson, D. B (1997). Cardiomyocyte differentiation by GATA-4-deficient embryonic stem cells. Development 124, 3755-3764.[Abstract]

Narita, N., Bielinska, M. and Wilson, D. B (1997). Wild-type endoderm abrogates the ventral developmental defects associated with GATA-4 deficiency in the mouse. Dev. Biol 189, 270-274.[Medline]

Neubuser, A., Peters, H., Balling, R. and Martin, G. R (1997). Antagonisticinteractions between FGF and BMP signaling pathways: a mechanism for positioning the sites of tooth formation. Cell 90, 247-255.[Medline]

Nikaido, M., Tada, M., Saji, T. and Ueno, N (1997). Conservation of BMP signaling in zebrafish mesoderm patterning. Mech. Dev 61, 75-88.[Medline]

Olson, E. L., Perry, M. and Shultz, R. A (1995). Regulation of muscle differentiation by the MEF2 family of MADS box transcription factors. Dev. Biol 172, 2-14.[Medline]

Olson, E. N. and Srivastava, D (1996). Molecular pathways controlling heart development. Science 272, 671-676.[Abstract]

Ornitz, D. M., Xu, J., Colvin, J. S., McEwen, D. G., MacArthur, C. A., Coulier, F., Gao, G. and Goldfarb, M (1996). Receptor specificity of the fibroblast growth factor family. J. Biol. Chem 271, 15292-15297.[Abstract/Free Full Text]

Orr-Urtreger, A., Givol, D., Yayon, A., Yarden, Y. and Lonai, P (1991). Developmental expression of two murine fibroblast growth factor receptors, flg and bek. Development 113, 1419-1434.[Abstract]

Parlow, M. H., Bolender, D. L., Kokan-Moore, N. P. and Lough, J (1991). Localization of bFGF-like proteins as punctate inclusions in the preseptation myocardium of the chicken embryo. Dev. Biol 146, 139-147.[Medline]

Peters, K. G., Werner, S., Chen, G. and Williams, L. T (1992). Two FGF receptor genes are differentially expressed in epithelial and mesenchymal tissues during limb formation and organogenesis in the mouse. Development 114, 233-243.[Abstract]

Picker, A., Brennan, C., Reifers, F., Clarke, J., Holder, N. and Brand, M (1999). Requirement for the zebrafish mid-hindbrain boundary in midbrain polarisation, mapping and confinement of the retinotectal projection. Development 126, 2967-2978.[Abstract]

Reifers, F., B\232hli, H., Walsh, E. C., Crossley, P. H., Stainier, D. Y. R. and Brand, M (1998). Fgf8 is mutated in zebrafish acerebellar(ace) mutants and is required for maintenance of midbrain-hindbrain boundary development and somitogenesis. Development 125, 2381-2395.[Abstract]

Rupp, R. A. W., Snider, L. and Weintraub, H (1994). Xenopus embryos regulate the nuclear localization of XMyoD. Genes Dev 8, 1311-1323.[Abstract/Free Full Text]

Schultheiss, T. M., Burch, J. B. E. and Lassar, A. B (1997). A role for bone morphogenetic proteins in the induction of cardiac myogenesis. Genes Dev 11, 451-462.[Abstract/Free Full Text]

Searcy, R. D., Vincent, E. B., Liberatore, C. M. and Yutzey, K. E (1998). A GATA-dependent nkx-2.5 regulatory element activates early cardiac gene expression in transgenic mice. Development 125, 4461-4470.[Abstract]

Serbedzija, G. N., Chen, J.-N. and Fishman, M. C (1998). Regulation in the heart field of zebrafish. Development 125, 1095-1101.[Abstract]

Spirito, P., Fu, Y. M., Yu, Z. X., Epstein, S. E. and Casscells, W (1991). Immunohistochemical localization of basic and acidic fobrobalst growth factors in the developing rat heart. Circulation 84, 322-332.[Abstract/Free Full Text]

Srivastava, D., Cserjesi, P. and Olson, E. N (1995). A subclass of bHLH proteins required for cardiac morphogenesis. Science 270, 1995-1999.[Abstract/Free Full Text]

Stainier, D. Y. R. and Gilbert, W (1990). Pioneer neurons in the mouse trigeminal sensory system. Proc. Natl. Acad. Sci. USA 87, 923-927.[Abstract/Free Full Text]

Stainier, D. Y. R. and Fishman, M. C (1992). Patterning the zebrafish heart tube: Acquisition of anteroposterior polarity. Dev. Biol 153, 91-101.[Medline]

Stainier, D. Y. R., Lee, R. K. and Fishman, M. C (1993). Cardiovascular development in the zebrafish. Development 119, 31-40.[Abstract]

Sugi, Y. and Lough, J (1995). Activin-A and FGF-2 mimic the inductive effects of anterior endoderm on terminal cardiac myogenesis in vitro. Dev. Biol 168, 567-574.[Medline]

Sugi, Y., Sasse, J., Barron, M. and Lough, J (1995). Developmental expression of fibroblast growth factor receptor-1 ( cek ; flg ) during heart development. Dev. Dyn 202, 115-125.[Medline]

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

Tanaka, M., Chen, Z., Bartunkova, S., Yamasaki, N. and Izumo, S (1999). The cardiac homeobox gene Csx/Nkx2.5 lies genetically upstream of multiple genes essential for heart development. Development 126, 1269-1280.[Abstract]

Thisse, B., Thisse, C. and Weston, J. A (1995). Novel FGF receptor (Z-FGFR4) is dynamically expressed in mesoderm and neurectoderm during early zebrafish embryogenesis. Dev. Dyn 203, 377-391.[Medline]

Ticho, B. S., Stainier, D. Y. R., Fishman, M. C. and Breitbart, R. E (1996). Three zebrafish MEF2 genes delineate somitic and cardiac muscle development in wild-type and mutant embryos. Mech. Dev 59, 205-218.[Medline]

Warga, R. M. and Kimmel, C. B (1990). Cell movements during epiboly and gastrulation in zebrafish. Development 108, 569-580.[Abstract/Free Full Text]

Weinstein, B. M., Stemple, D. L., Driever, W. and Fishman, M. C (1995). gridlock , a localized heritable vascular patterning defect in the zebrafish. Nat. Med 1, 1143-1147.[Medline]

Weinstein, M., Xu, X., Ohyama, K. and Deng, C.-X (1998). FGFR-3 and FGFR-4 function cooperatively to direct alveogenesis in the murine lung. Development 125, 3615-3623.[Abstract]

Yamaguchi, T. P., Harpal, K., Henkemeyer, M. and Rossant, J (1991). fgfr-1 is required for embryonic growth and mesodermal patterning during mouse gastrulation. Genes Dev 8, 3032-3044.

Zhang, H. and Bradley, A (1996). Mice deficient for BMP2 are nonviable and have defects in amnion/chorion and cardiac development. Development 122, 2977-2986.[Abstract]

Zhu, X., Sasse, J., McAllister, D. and Lough, J (1996). Evidence that fibroblast growth factors 1 and 4 participate in regulation of cardiogenesis. Dev. Dyn 207, 429-438.[Medline]




This article has been cited by other articles:


Home page
DevelopmentHome page
T. Wendl, D. Adzic, J. J. Schoenebeck, S. Scholpp, M. Brand, D. Yelon, and K. B. Rohr
Early developmental specification of the thyroid gland depends on han-expressing surrounding tissue and on FGF signals
Development, August 1, 2007; 134(15): 2871 - 2879.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
A. Nechiporuk, T. Linbo, K. D. Poss, and D. W. Raible
Specification of epibranchial placodes in zebrafish
Development, February 1, 2007; 134(3): 611 - 623.
[Abstract] [Full Text] [PDF]


Home page
GlycobiologyHome page
M. J. Kim, I-H. Liu, Y. Song, J.-A. Lee, W. Halfter, R. J. Balice-Gordon, E. Linney, and G. J. Cole
Agrin is required for posterior development and motor axon outgrowth and branching in embryonic zebrafish
Glycobiology, February 1, 2007; 17(2): 231 - 247.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
B. Davidson, W. Shi, J. Beh, L. Christiaen, and M. Levine
FGF signaling delineates the cardiac progenitor field in the simple chordate, Ciona intestinalis
Genes & Dev., October 1, 2006; 20(19): 2728 - 2738.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
R. W. Koster and S. E. Fraser
FGF signaling mediates regeneration of the differentiating cerebellum through repatterning of the anterior hindbrain and reinitiation of neuronal migration.
J. Neurosci., July 5, 2006; 26(27): 7293 - 7304.
[Abstract] [Full Text] [PDF]


Home page
Cardiovasc ResHome page
A. Marguerie, F. Bajolle, S. Zaffran, N. A. Brown, C. Dickson, M. E. Buckingham, and R. G. Kelly
Congenital heart defects in Fgfr2-IIIb and Fgf10 mutant mice
Cardiovasc Res, July 1, 2006; 71(1): 50 - 60.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. Ilagan, R. Abu-Issa, D. Brown, Y.-P. Yang, K. Jiao, R. J. Schwartz, J. Klingensmith, and E. N. Meyers
Fgf8 is required for anterior heart field development
Development, June 15, 2006; 133(12): 2435 - 2445.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
A. Picker and M. Brand
Fgf signals from a novel signaling center determine axial patterning of the prospective neural retina
Development, November 15, 2005; 132(22): 4951 - 4962.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. A. Groves, C. L. Hammond, and S. M. Hughes
Fgf8 drives myogenic progression of a novel lateral fast muscle fibre population in zebrafish
Development, October 1, 2005; 132(19): 4211 - 4222.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
P. J. Gianakopoulos and I. S. Skerjanc
Hedgehog Signaling Induces Cardiomyogenesis in P19 Cells
J. Biol. Chem., June 3, 2005; 280(22): 21022 - 21028.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
M. Rhinn, K. Lun, M. Luz, M. Werner, and M. Brand
Positioning of the midbrain-hindbrain boundary organizer through global posteriorization of the neuroectoderm mediated by Wnt8 signaling
Development, March 15, 2005; 132(6): 1261 - 1272.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
R. K. Ladher, T. J. Wright, A. M. Moon, S. L. Mansour, and G. C. Schoenwolf
FGF8 initiates inner ear induction in chick and mouse
Genes & Dev., March 1, 2005; 19(5): 603 - 613.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. G. Crump, L. Maves, N. D. Lawson, B. M. Weinstein, and C. B. Kimmel
An essential role for Fgfs in endodermal pouch formation influences later craniofacial skeletal patterning
Development, November 15, 2004; 131(22): 5703 - 5716.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
K.-H. Lee, S. Evans, T. Y. Ruan, and A. B. Lassar
SMAD-mediated modulation of YY1 activity regulates the BMP response and cardiac-specific expression of a GATA4/5/6-dependent chick Nkx2.5 enhancer
Development, October 1, 2004; 131(19): 4709 - 4723.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
Y. Satou, K. S. Imai, and N. Satoh
The ascidian Mesp gene specifies heart precursor cells
Development, June 1, 2004; 131(11): 2533 - 2541.
[Abstract] [Full Text] [PDF]


Home page
Cardiovasc ResHome page
B. C. Heng, H. K. Haider, E. K.-W. Sim, T. Cao, and S. C. Ng
Strategies for directing the differentiation of stem cells into the cardiomyogenic lineage in vitro
Cardiovasc Res, April 1, 2004; 62(1): 34 - 42.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
A. Stathopoulos, B. Tam, M. Ronshaugen, M. Frasch, and M. Levine
pyramus and thisbe: FGF genes that pattern the mesoderm of Drosophila embryos
Genes & Dev., March 15, 2004; 18(6): 687 - 699.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. Jaszai, F. Reifers, A. Picker, T. Langenberg, and M. Brand
Isthmus-to-midbrain transformation in the absence of midbrain-hindbrain organizer activity
Development, December 29, 2003; 130(26): 6611 - 6623.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
T. L. Macatee, B. P. Hammond, B. R. Arenkiel, L. Francis, D. U. Frank, and A. M. Moon
Ablation of specific expression domains reveals discrete functions of ectoderm- and endoderm-derived FGF8 during cardiovascular and pharyngeal development
Development, December 22, 2003; 130(25): 6361 - 6374.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
B. L. Allen and A. C. Rapraeger
Spatial and temporal expression of heparan sulfate in mouse development regulates FGF and FGF receptor assembly
J. Cell Biol., November 10, 2003; 163(3): 637 - 648.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
L. B. Corson, Y. Yamanaka, K.-M. V. Lai, and J. Rossant
Spatial and temporal patterns of ERK signaling during mouse embryogenesis
Development, October 1, 2003; 130(19): 4527 - 4537.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
B. Davidson and M. Levine
Evolutionary origins of the vertebrate heart: Specification of the cardiac lineage in Ciona intestinalis
PNAS, September 30, 2003; 100(20): 11469 - 11473.
[Abstract] [Full Text] [PDF]


Home page
Circ. Res.Home page
P. Dell'Era, R. Ronca, L. Coco, S. Nicoli, M. Metra, and M. Presta
Fibroblast Growth Factor Receptor-1 Is Essential for In Vitro Cardiomyocyte Development
Circ. Res., September 5, 2003; 93(5): 414 - 420.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
E. N. Olson and M. D. Schneider
Sizing up the heart: development redux in disease
Genes & Dev., August 15, 2003; 17(16): 1937 - 1956.
[Full Text] [PDF]


Home page
Cardiovasc ResHome page
M. J. Solloway and R. P. Harvey
Molecular pathways in myocardial development: a stem cell perspective
Cardiovasc Res, May 1, 2003; 58(2): 264 - 277.
[Abstract] [Full Text] [PDF]


Home page
Cardiovasc ResHome page
A. Sachinidis, B. K. Fleischmann, E. Kolossov, M. Wartenberg, H. Sauer, and J. Hescheler
Cardiac specific differentiation of mouse embryonic stem cells
Cardiovasc Res, May 1, 2003; 58(2): 278 - 291.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
B. H. Alsan and T. M. Schultheiss
Regulation of avian cardiogenesis by Fgf8 signaling
Development, March 6, 2003; 129(8): 1935 - 1943.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
G. Reim and M. Brand
spiel-ohne-grenzen/pou2 mediates regional competence to respond to Fgf8 during zebrafish early neural development
Development, March 4, 2003; 129(4): 917 - 933.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. Abu-Issa, G. Smyth, I. Smoak, K.-i. Yamamura, and E. N. Meyers
Fgf8 is required for pharyngeal arch and cardiovascular development in the mouse
Development, January 10, 2002; 129(19): 4613 - 4625.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
K. L. Waldo, D. H. Kumiski, K. T. Wallis, H. A. Stadt, Mary. R. Hutson, D. H. Platt, and M. L. Kirby
Conotruncal myocardium arises from a secondary heart field
Development, August 15, 2001; 128(16): 3179 - 3188.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
M. Furthauer, F. Reifers, M. Brand, B. Thisse, and C. Thisse
sprouty4 acts in vivo as a feedback-induced antagonist of FGF signaling in zebrafish
Development, June 15, 2001; 128(12): 2175 - 2186.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
M. J. Marvin, G. Di Rocco, A. Gardiner, S. M. Bush, and A. B. Lassar
Inhibition of Wnt activity induces heart formation from posterior mesoderm
Genes & Dev., February 1, 2001; 15(3): 316 - 327.
[Abstract] [Full Text]


Home page
DevelopmentHome page
H Grandel, B. Draper, and S Schulte-Merker
dackel acts in the ectoderm of the zebrafish pectoral fin bud to maintain AER signaling
Development, January 10, 2000; 127(19): 4169 - 4178.
[Abstract] [PDF]


Home page
DevelopmentHome page
S Shanmugalingam, C Houart, A Picker, F Reifers, R Macdonald, A Barth, K Griffin, M Brand, and S. Wilson
Ace/Fgf8 is required for forebrain commissure formation and patterning of the telencephalon
Development, January 6, 2000; 127(12): 2549 - 2561.
[Abstract] [PDF]


Home page
DevelopmentHome page
D Yelon, B Ticho, M. Halpern, I Ruvinsky, R. Ho, L. Silver, and D. Stainier
The bHLH transcription factor hand2 plays parallel roles in zebrafish heart and pectoral fin development
Development, January 6, 2000; 127(12): 2573 - 2582.
[Abstract] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Reifers, F.
Right arrow Articles by Brand, M.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Reifers, F.
Right arrow Articles by Brand, M.