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2.
Development ; 135(6): 1147-56, 2008 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-18256191

RESUMO

The mechanisms that regulate sarcomere assembly during myofibril formation are poorly understood. In this study, we characterise the zebrafish sloth(u45) mutant, in which the initial steps in sarcomere assembly take place, but thick filaments are absent and filamentous I-Z-I brushes fail to align or adopt correct spacing. The mutation only affects skeletal muscle and mutant embryos show no other obvious phenotypes. Surprisingly, we find that the phenotype is due to mutation in one copy of a tandemly duplicated hsp90a gene. The mutation disrupts the chaperoning function of Hsp90a through interference with ATPase activity. Despite being located only 2 kb from hsp90a, hsp90a2 has no obvious role in sarcomere assembly. Loss of Hsp90a function leads to the downregulation of genes encoding sarcomeric proteins and upregulation of hsp90a and several other genes encoding proteins that may act with Hsp90a during sarcomere assembly. Our studies reveal a surprisingly specific developmental role for a single Hsp90 gene in a regulatory pathway controlling late steps in sarcomere assembly.


Assuntos
Adenosina Trifosfatases/metabolismo , Proteínas de Choque Térmico HSP90/metabolismo , Desenvolvimento Muscular/fisiologia , Músculo Esquelético/crescimento & desenvolvimento , Músculo Esquelético/metabolismo , Proteínas de Peixe-Zebra/metabolismo , Adenosina Trifosfatases/química , Adenosina Trifosfatases/deficiência , Adenosina Trifosfatases/genética , Animais , Sequência de Bases , Sítios de Ligação , Primers do DNA/genética , Proteínas de Choque Térmico HSP90/química , Proteínas de Choque Térmico HSP90/deficiência , Proteínas de Choque Térmico HSP90/genética , Resposta ao Choque Térmico , Microscopia Eletrônica de Transmissão , Modelos Moleculares , Mutação , Miofibrilas/metabolismo , Fenótipo , Sarcômeros/metabolismo , Peixe-Zebra/genética , Peixe-Zebra/crescimento & desenvolvimento , Peixe-Zebra/metabolismo , Proteínas de Peixe-Zebra/química , Proteínas de Peixe-Zebra/deficiência , Proteínas de Peixe-Zebra/genética
3.
Curr Biol ; 13(18): 1571-82, 2003 Sep 16.
Artigo em Inglês | MEDLINE | ID: mdl-13678588

RESUMO

BACKGROUND: During somitogenesis, segmental patterns of gene activity provide the instructions by which mesenchymal cells epithelialize and form somites. Various members of the Eph family of transmembrane receptor tyrosine kinases and their Ephrin ligands are expressed in a segmental pattern in the rostral presomitic mesoderm. This pattern establishes a receptor/ligand interface at each site of somite furrow formation. In the fused somites (fss/tbx24) mutant, lack of intersomitic boundaries and epithelial somites is accompanied by a lack of Eph receptor/Ephrin signaling interfaces. These observations suggest a role for Eph/Ephrin signaling in the regulation of somite epithelialization. RESULTS: We show that restoration of Eph/Ephrin signaling in the paraxial mesoderm of fss mutants rescues most aspects of somite morphogenesis. First, restoration of bidirectional or unidirectional EphA4/Ephrin signaling results in the formation and maintenance of morphologically distinct boundaries. Second, activation of EphA4 leads to the cell-autonomous acquisition of a columnar morphology and apical redistribution of beta-catenin, aspects of epithelialization characteristic of cells at somite boundaries. Third, activation of EphA4 leads to nonautonomous acquisition of columnar morphology and polarized relocalization of the centrosome and nucleus in cells on the opposite side of the forming boundary. These nonautonomous aspects of epithelialization may involve interplay of EphA4 with other intercellular signaling molecules. CONCLUSIONS: Our results demonstrate that Eph/Ephrin signaling is an important component of the molecular mechanisms driving somite morphogenesis. We propose a new role for Eph receptors and Ephrins as intercellular signaling molecules that establish cell polarity during mesenchymal-to-epithelial transition of the paraxial mesoderm.


Assuntos
Efrinas/metabolismo , Células Epiteliais/metabolismo , Morfogênese , Transdução de Sinais , Somitos/metabolismo , Peixe-Zebra/embriologia , Animais , Diferenciação Celular , Proteínas do Citoesqueleto/metabolismo , Embrião não Mamífero/citologia , Embrião não Mamífero/embriologia , Efrinas/genética , Células Epiteliais/citologia , Mutação , Receptores da Família Eph/metabolismo , Somitos/citologia , Transativadores/metabolismo , Peixe-Zebra/genética , Proteínas de Peixe-Zebra/genética , Proteínas de Peixe-Zebra/metabolismo , beta Catenina
4.
Development ; 129(12): 2851-65, 2002 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-12050134

RESUMO

A number of studies have suggested that retinoic acid (RA) is an important signal for patterning the hindbrain, the branchial arches and the limb bud. Retinoic acid is thought to act on the posterior hindbrain and the limb buds at somitogenesis stages in chick and mouse embryos. Here we report a much earlier requirement for RA signalling during pre-segmentation stages for proper development of these structures in zebrafish. We present evidence that a RA signal is necessary during pre-segmentation stages for proper expression of the spinal cord markers hoxb5a and hoxb6b, suggesting an influence of RA on anteroposterior patterning of the neural plate posterior to the hindbrain. We report the identification and expression pattern of the zebrafish retinaldehyde dehydrogenase2 (raldh2/aldh1a2) gene. Raldh2 synthesises retinoic acid (RA) from its immediate precursor retinal. It is expressed in a highly ordered spatial and temporal fashion during gastrulation in the involuting mesoderm and during later embryogenesis in paraxial mesoderm, branchial arches, eyes and fin buds, suggesting the involvement of RA at different times of development in different functional contexts. Mapping of the raldh2 gene reveals close linkage to no-fin (nof), a newly discovered mutant lacking pectoral fins and cartilaginous gill arches. Cloning and functional tests of the wild-type and nof alleles of raldh2 reveal that nof is a raldh2 mutant. By treating nof mutants with RA during different time windows and by making use of a retinoic acid receptor antagonist, we show that RA signalling during pre-segmentation stages is necessary for anteroposterior patterning in the CNS and for fin induction to occur.


Assuntos
Aldeído Oxirredutases/genética , Aldeído Oxirredutases/metabolismo , Sistema Nervoso Central/embriologia , Transdução de Sinais , Tretinoína/metabolismo , Peixe-Zebra/embriologia , Sequência de Aminoácidos , Animais , Padronização Corporal , Mapeamento Cromossômico , Clonagem Molecular , Embrião não Mamífero , Feminino , Regulação da Expressão Gênica no Desenvolvimento , Marcadores Genéticos , Botões de Extremidades/metabolismo , Masculino , Dados de Sequência Molecular , Mutação , Retinal Desidrogenase , Rombencéfalo/embriologia , Homologia de Sequência de Aminoácidos , Medula Espinal/embriologia
5.
Wilehm Roux Arch Dev Biol ; 193(6): 394-401, 1984 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28305105

RESUMO

Supernumerary limbs were produced by deviating the sciatic nerve to the surface of the axolotl hindlimb either alone or in combination with small skin grafts from specific limb positions. With no skin grafts a very low frequency of good supernumeraries were produced. However, when associated with skin grafts, this frequency was significantly increased. The pattern of skeletal elements and muscles were analysed in the supernumeraries which formed at each location. In both the anterior-posterior and dorsal-ventral axes specific anatomical features were found which correlated with their position of origin on the host limb. Characteristic features were also observed with respect to the proximal-distal axis of the outgrowths. These phenomena are discussed in relation to our current understanding of the rules of pattern regulation in the regenerating limb.

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