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La ricerca find articoli where soggetti phrase all words 'MESODERM' sort by level,fasc_key/DESCEND, pagina_ini_num/ASCEND ha restituito 2303 riferimenti
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    1. Korn, J; Christ, B; Kurz, R
      Neuroectodermal origin of brain pericytes and vascular smooth muscle cells

      JOURNAL OF COMPARATIVE NEUROLOGY
    2. Zon, LI
      Self-renewal versus differentiation, a job for the mighty morphogens

      NATURE IMMUNOLOGY
    3. Kozmik, Z; Holland, LZ; Schubert, M; Lacalli, TC; Kreslova, J; Vlcek, C; Holland, ND
      Characterization of amphioxus AmphiVent, an evolutionarily conserved marker for chordate ventral mesoderm

      GENESIS
    4. Baron, MH
      Molecular regulation of embryonic hematopoiesis and vascular development: A novel pathway

      JOURNAL OF HEMATOTHERAPY & STEM CELL RESEARCH
    5. Saga, Y; Takeda, H
      The making of the somite: Molecular events in vertebrate segmentation

      NATURE REVIEWS GENETICS
    6. Schoenwolf, GC
      Cutting, pasting and painting: Experimental embryology and neural development

      NATURE REVIEWS NEUROSCIENCE
    7. Kusakabe, M; Masuyama, N; Hanafusa, H; Nishida, E
      Xenopus FRS2 is involved in early embryogenesis in cooperation with the Src family kinase Laloo

      EMBO REPORTS
    8. Saller, E; Bienz, M
      Direct competition between Brinker and Drosophila Mad in Dpp target gene transcription

      EMBO REPORTS
    9. Lopez-Sanchez, C; Garcia-Martinez, V; Schoenwolf, GC
      Localization of cells of the prospective neural plate, heart and somites within the primitive streak and epiblast of avian embryos at intermediate primitive-streak stages

      CELLS TISSUES ORGANS
    10. Mina, M
      Morphogenesis of the medial region of the developing mandible is regulatedby multiple signaling pathways

      CELLS TISSUES ORGANS
    11. Machado, AF; Martin, LJ; Collins, MD
      Pax3 and the splotch mutations: Structure, function, and relationship to teratogenesis, including gene-chemical interactions

      CURRENT PHARMACEUTICAL DESIGN
    12. Juan, H; Hamada, H
      Roles of nodal-lefty regulatory loops in embryonic patterning of vertebrates

      GENES TO CELLS
    13. Yeo, CY; Whitman, M
      Nodal signals to Smads through Cripto-dependent and Cripto-independent mechanisms

      MOLECULAR CELL
    14. Pourquie, O
      Vertebrate somitogenesis

      ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY
    15. Mercola, M; Levin, M
      Left-right asymmetry determination in vertebrates

      ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY
    16. Mummery, CL
      Transforming growth factor beta and mouse development

      MICROSCOPY RESEARCH AND TECHNIQUE
    17. Dickmeis, T; Aanstad, P; Clark, M; Fischer, N; Herwig, R; Mourrain, P; Blader, P; Rosa, F; Lehrach, H; Strahle, U
      Identification of nodal signaling targets by array analysis of induced complex probes

      DEVELOPMENTAL DYNAMICS
    18. D'Amico, LA; Cooper, MS
      Morphogenetic domains in the yolk syncytial layer of axiating zebrafish embryos

      DEVELOPMENTAL DYNAMICS
    19. Glavic, A; Gomez-Skarmeta, JL; Mayor, R
      Xiro-1 controls mesoderm patterning by repressing bmp-4 expression in the Spemann organizer

      DEVELOPMENTAL DYNAMICS
    20. Schubert, FR; Tremblay, P; Mansouri, A; Faisst, AM; Kammandel, B; Lumsden, A; Gruss, P; Dietrich, S
      Early mesodermal phenotypes in Splotch suggest a role for Pax3 in the formation of epithelial somites

      DEVELOPMENTAL DYNAMICS
    21. Healy, KH; Schoenwolf, GC; Darnell, DK
      Cell interactions underlying notochord induction and formation in the chick embryo

      DEVELOPMENTAL DYNAMICS
    22. Chen, JCJ; Love, CM; Goldhamer, DJ
      Two upstream enhancers collaborate to regulate the spatial patterning and timing of MyoD transcription during mouse development

      DEVELOPMENTAL DYNAMICS
    23. Bahri, SM; Chia, W; Yang, XH
      Characterization and mutant analysis of the Drosophila sema 5C gene

      DEVELOPMENTAL DYNAMICS
    24. Gaunt, SJ
      Gradients and forward spreading of vertebrate Hox gene expression detectedby using a Hox/lacZ transgene

      DEVELOPMENTAL DYNAMICS
    25. Flanders, KC; Kim, ES; Roberts, AB
      Immunohistochemical expression of Smads 1-6 in the 15-day gestation mouse embryo: Signaling by BMPs and TGF-beta s

      DEVELOPMENTAL DYNAMICS
    26. Weinstein, DC; Hemmati-Brivanlou, A
      Src family kinase function during early Xenopus development

      DEVELOPMENTAL DYNAMICS
    27. Poole, TJ; Finkelstein, EB; Cox, CM
      The role of FGF and VEGF in angioblast induction and migration during vascular development

      DEVELOPMENTAL DYNAMICS
    28. Luo, T; Matsuo-Takasaki, M; Sargent, TD
      Distinct roles for distal-less genes Dlx3 and Dlx5 in regulating ectodermal development in Xenopus

      MOLECULAR REPRODUCTION AND DEVELOPMENT
    29. van de Pavert, SA; Schipper, H; de Wit, AAC; Soede, NM; van den Hurk, R; Taverne, MAM; Boerjan, ML; Stroband, HWJ
      Comparison of anterior-posterior development in the porcine versus chickenembryo, using goosecoid expression as a marker

      REPRODUCTION FERTILITY AND DEVELOPMENT
    30. Yang, X; Sun, YX; Zhou, J; Huang, PT; Huang, CF; Xu, XL; Li, CL; Gotay, J; Chen, L; Deng, CX
      Establishment of murine Smad5 double knockout ES cells and the studies on their properties

      SCIENCE IN CHINA SERIES C-LIFE SCIENCES
    31. Ghosh, TK; Packham, EA; Bonser, AJ; Robinson, TE; Cross, SJ; Brook, JD
      Characterization of the TBX5 binding site and analysis of mutations that cause Holt-Oram syndrome

      HUMAN MOLECULAR GENETICS
    32. Kuratani, S; Nobusada, Y; Horigome, N; Shigetani, Y
      Embryology of the lamprey and evolution of the vertebrate jaw: insights from molecular and developmental perspectives

      PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY OF LONDON SERIES B-BIOLOGICAL SCIENCES
    33. Stemple, DL
      Vertebrate development: The subtle art of germ-layer specification

      CURRENT BIOLOGY
    34. Huber, TL; Perkins, AC; Deconinck, AE; Chan, FY; Mead, PE; Zon, LI
      neptune, a Kruppel-like transcription factor that participates in primitive erythropoiesis in Xenopus

      CURRENT BIOLOGY
    35. Carmany-Rampey, A; Schier, AF
      Single-cell internalization during zebrafish gastrulation

      CURRENT BIOLOGY
    36. Patten, I; Placzek, M
      Vertebrate development: Et in Arkadia

      CURRENT BIOLOGY
    37. Kirby, RJ; Hamilton, GM; Finnegan, DJ; Johnson, KJ; Jarman, AP
      Drosophila homolog of the myotonic dystrophy-associated gene, SIX5, is required for muscle and gonad development

      CURRENT BIOLOGY
    38. Mullor, JL; Dahmane, N; Sun, T; Altaba, ARI
      Wnt signals are targets and mediators of Gli function

      CURRENT BIOLOGY
    39. Kiecker, C; Niehrs, C
      The role of prechordal mesendoderm in neural patterning

      CURRENT OPINION IN NEUROBIOLOGY
    40. Hill, CS
      TGF-beta signalling pathways in early Xenopus development

      CURRENT OPINION IN GENETICS & DEVELOPMENT
    41. Lu, CC; Brennan, J; Robertson, EJ
      From fertilization to gastrulation: axis formation in the mouse embryo

      CURRENT OPINION IN GENETICS & DEVELOPMENT
    42. Schier, AF
      Axis formation and patterning in zebrafish

      CURRENT OPINION IN GENETICS & DEVELOPMENT
    43. Locascio, A; Nieto, MA
      Cell movements during vertebrate development: integrated tissue behaviour versus individual cell migration

      CURRENT OPINION IN GENETICS & DEVELOPMENT
    44. Bailey, P; Holowacz, T; Lassar, AB
      The origin of skeletal muscle stem cells in the embryo and the adult

      CURRENT OPINION IN CELL BIOLOGY
    45. Song, Y; Cohler, AN; Weinstein, DC
      Regulation of Laloo by the Xenopus C-terminal Src kinase (Xcsk) during early vertebrate development

      ONCOGENE
    46. Xue, YZ; Wang, XZ; Li, Z; Gotoh, N; Chapman, D; Skolnik, EY
      Mesodermal patterning defect in mice lacking the Ste20 NCK interacting kinase (NIK)

      DEVELOPMENT
    47. Standley, HJ; Zorn, AM; Gurdon, JB
      eFGF and its mode of action in the community effect during Xenopus myogenesis

      DEVELOPMENT
    48. Koizumi, K; Nakajima, M; Yuasa, S; Saga, Y; Sakai, T; Kuriyama, T; Shirasawa, T; Koseki, H
      The role of presenilin 1 during somite segmentation

      DEVELOPMENT
    49. Etchevers, HC; Vincent, C; Le Douarin, M; Couly, GF
      The cephalic neural crest provides pericytes and smooth muscle cells to all blood vessels of the face and forebrain

      DEVELOPMENT
    50. Hayes, SA; Miller, JM; Hoshizaki, DK
      serpent, a GATA-like transcription factor gene, induces fat-cell development in Drosophila melanogaster

      DEVELOPMENT
    51. Arai, A; Nakamoto, A; Shimizu, T
      Specification of ectodermal teloblast lineages in embryos of the oligochaete annelid Tubifex: involvement of novel cell-cell interactions

      DEVELOPMENT
    52. Bauer, H; Lele, Z; Rauch, GJ; Geisler, R; Hammerschmidt, M
      The type I serine/threonine kinase receptor Alk8/Lost-a-fin is required for Bmp2b/7 signal transduction during dorsoventral patterning of the zebrafish embryo

      DEVELOPMENT
    53. Mintzer, KA; Lee, MA; Runke, G; Trout, J; Whitman, M; Mullins, MC
      Lost-a-fin encodes a type IBMP receptor, Alk8, acting maternally and zygotically in dorsoventral pattern formation

      DEVELOPMENT
    54. Perea-Gomez, A; Lawson, KA; Rhinn, M; Zakin, L; Brulet, P; Mazan, S; Ang, SL
      Otx2 is required for visceral endoderm movement and for the restriction ofposterior signals in the epiblast of the mouse embryo

      DEVELOPMENT
    55. Gomez-Skarmeta, JL; de la Calle-Mustienes, E; Modolell, J
      The Wnt-activated Xiro1 gene encodes a repressor that is essential for neural development and downregulates Bmp4

      DEVELOPMENT
    56. Withington, S; Beddington, R; Cooke, J
      Foregut endoderm is required at head process stages for anteriormost neural patterning in chick

      DEVELOPMENT
    57. Pizette, S; Abate-Shen, C; Niswander, L
      BMP controls proximodistal outgrowth, via induction of the apical ectodermal ridge, and dorsoventral patterning in the vertebrate limb

      DEVELOPMENT
    58. Duan, H; Skeath, JB; Nguyen, HT
      Drosophila Lame duck, a novel member of the Gli superfamily, acts as a keyregulator of myogenesis by controlling fusion-competent myoblast development

      DEVELOPMENT
    59. Dossenbach, C; Rock, S; Affolter, M
      Specificity of FGF signaling in cell migration in Drosophila

      DEVELOPMENT
    60. Barlow, LA
      Specification of pharyngeal endoderm is dependent on early signals from axial mesoderm

      DEVELOPMENT
    61. Dottori, M; Gross, MK; Labosky, P; Goulding, M
      The winged-helix transcription factor Foxd3 suppresses interneuron differentiation and promotes neural crest cell fate

      DEVELOPMENT
    62. Kiecker, C; Niehrs, C
      A morphogen gradient of Wnt/beta-catenin signalling regulates anteroposterior neural patterning in Xenopus

      DEVELOPMENT
    63. Artero, RD; Castanon, I; Baylies, MK
      The immunoglobulin-like protein Hibris functions as a dose-dependent regulator of myoblast fusion and is differentially controlled by Ras and Notch signaling

      DEVELOPMENT
    64. Dworak, HA; Charles, MA; Pellerano, LB; Sink, H
      Characterization of Drosophila hibris, a gene related to human nephrin

      DEVELOPMENT
    65. Mahlapuu, M; Ormestad, M; Enerback, S; Carlsson, P
      The forkhead transcription factor Foxf1 is required for differentiation ofextra-embryonic and lateral plate mesoderm

      DEVELOPMENT
    66. Xanthos, JB; Kofron, M; Wylie, C; Heasman, J
      Maternal VegT is the initiator of a molecular network specifying endoderm in Xenopus laevis

      DEVELOPMENT
    67. San Martin, B; Bate, M
      Hindgut visceral mesoderm requires an ectodermal template for normal development in Drosophila

      DEVELOPMENT
    68. Lake, BB; Ford, R; Kao, KR
      Xrel3 is required for head development in Xenopus laevis

      DEVELOPMENT
    69. Deardorff, MA; Tan, C; Saint-Jeannet, JP; Klein, PS
      A role for frizzled 3 in neural crest development

      DEVELOPMENT
    70. Mitani, Y; Takahashi, H; Satoh, N
      Regulation of the muscle-specific expression and function of an ascidian T-box gene, As-T2

      DEVELOPMENT
    71. Conlon, FL; Fairclough, L; Price, BMJ; Casey, ES; Smith, JC
      Determinants of T box protein specificity

      DEVELOPMENT
    72. Yasuo, H; Lemaire, P
      Role of Goosecoid, Xnot and Wnt antagonists in the maintenance of the notochord genetic programme in Xenopus gastrulae

      DEVELOPMENT
    73. Erter, CE; Wilm, TP; Basler, N; Wright, CVE; Solnica-Krezel, L
      Wnt8 is required in lateral mesendodermal precursors for neural posteriorization in vivo

      DEVELOPMENT
    74. Tremblay, KD; Dunn, NR; Robertson, EJ
      Mouse embryos lacking Smad1 signals display defects in extra-embryonic tissues and germ cell formation

      DEVELOPMENT
    75. Kinder, SJ; Tsang, TE; Wakamiya, M; Sasaki, H; Behringer, RR; Nagy, A; Tam, PPL
      The organizer of the mouse gastrula is composed of a dynamic population ofprogenitor cells for the axial mesoderm

      DEVELOPMENT
    76. San Martin, B; Ruiz-Gomez, M; Landgraf, M; Bate, M
      A distinct set of founders and fusion-competent myoblasts make visceral muscles in the Drosophila embryo

      DEVELOPMENT
    77. Borchers, A; David, R; Wedlich, D
      Xenopus cadherin-11 restrains cranial neural crest migration and influences neural crest specification

      DEVELOPMENT
    78. Waldo, KL; Kumiski, DH; Wallis, KT; Stadt, HA; Hutson, MR; Platt, DH; Kirby, ML
      Conotruncal myocardium arises from a secondary heart field

      DEVELOPMENT
    79. Lee, MA; Heasman, J; Whitman, M
      Timing of endogenous activin-like signals and regional specification of the Xenopus embryo

      DEVELOPMENT
    80. Yao, J; Kessler, DS
      Goosecoid promotes head organizer activity by direct repression of Xwnt8 in Spemann's organizer

      DEVELOPMENT
    81. Gavalas, A; Trainor, P; Ariza-McNaughton, L; Krumlauf, R
      Synergy between Hoxa1 and Hoxb1: the relationship between arch patterning and the generation of cranial neural crest

      DEVELOPMENT
    82. Shimauchi, Y; Murakami, SD; Satoh, N
      FGF signals are involved in the differentiation of notochord cells and mesenchyme cells of the ascidian Halocynthia roretzi

      DEVELOPMENT
    83. Yamamoto, TS; Takagi, C; Hyodo, AC; Ueno, N
      Suppression of head formation by Xmsx-1 through the inhibition of intracellular nodal signaling

      DEVELOPMENT
    84. Klapper, R; Heuser, S; Strasser, T; Janning, W
      A new approach reveals syncytia within the Visceral musculature of Drosophila melanogaster

      DEVELOPMENT
    85. Sasai, N; Mizuseki, K; Sasai, Y
      Requirement of FoxD3-class signaling for neural crest determination in Xenopus

      DEVELOPMENT
    86. Brodu, V; Mugat, B; Fichelson, P; Lepesant, JA; Antoniewski, C
      A UAS site substitution approach to the in vivo dissection of promoters: interplay between the GATAb activator and the AEF-1 repressor at a Drosophila ecdysone response unit

      DEVELOPMENT
    87. Furthauer, M; Reifers, F; Brand, M; Thisse, B; Thisse, C
      sprouty4 acts in vivo as a feedback-induced antagonist of FGF signaling inzebrafish

      DEVELOPMENT
    88. Lance-Jones, C; Omelchenko, N; Bailis, A; Lynch, S; Sharma, K
      Hoxd10 induction and regionalization in the developing lumbosacral spinal cord

      DEVELOPMENT
    89. Mead, PE; Deconinck, AE; Huber, TL; Orkin, SH; Zon, LI
      Primitive erythropoiesis in the Xenopus embryo: the synergistic role of LMO-2, SCL and GATA-binding proteins

      DEVELOPMENT
    90. Imai, Y; Gates, MA; Melby, AE; Kimelman, D; Schier, AF; Talbot, WS
      The homeobox genes vox and vent are redundant repressors of dorsal fates in zebrafish

      DEVELOPMENT
    91. Hamilton, FS; Wheeler, GN; Hoppler, S
      Difference in XTcf-3 dependency accounts for change in response to beta-catenin-mediated Wnt signalling in Xenopus blastula

      DEVELOPMENT
    92. Dyer, MA; Farrington, SM; Mohn, D; Munday, JR; Baron, MH
      Indian hedgehog activates hematopoiesis and vasculogenesis and can respecify prospective neurectodermal cell fate in the mouse embryo

      DEVELOPMENT
    93. Lowe, LA; Yamada, S; Kuehn, MR
      Genetic dissection of nodal function in patterning the mouse embryo

      DEVELOPMENT
    94. Carvajal, JJ; Cox, D; Summerbell, D; Rigby, PWJ
      A BAC transgenic analysis of the Mrf4/Myf5 locus reveals interdigitated elements that control activation and maintenance of gene expression during muscle development

      DEVELOPMENT
    95. Carballada, R; Yasuo, H; Lemaire, P
      Phosphatidylinositol-3 kinase acts in parallel to the ERK MAP kinase in the FGF pathway during Xenopus mesoderm induction

      DEVELOPMENT
    96. Hirsinger, E; Malapert, P; Dubrulle, J; Delfini, MC; Duprez, D; Henrique, D; Ish-Horowicz, D; Pourquie, O
      Notch signalling acts in postmitotic avian myogenic cells to control MyoD activation

      DEVELOPMENT
    97. Reiter, JF; Kikuchi, Y; Stainier, DYR
      Multiple roles for Gata5 in zebrafish endoderm formation

      DEVELOPMENT
    98. Goldstein, B; Leviten, MW; Weisblat, DA
      Dorsal and Snail homologs in leech development

      DEVELOPMENT GENES AND EVOLUTION
    99. Nishino, A; Satou, Y; Morisawa, M; Satoh, N
      Brachyury (T) gene expression and notochord development in Oikopleura longicauda (Appendicularia, Urochordata)

      DEVELOPMENT GENES AND EVOLUTION
    100. Sporle, R
      Epaxial-adaxial-hypaxial regionalisation of the vertebrate somite: evidence for a semitic organiser and a mirror-image duplication

      DEVELOPMENT GENES AND EVOLUTION


ASDD Area Sistemi Dipartimentali e Documentali, Università di Bologna, Catalogo delle riviste ed altri periodici
Documento generato il 26/01/21 alle ore 23:19:15