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1.
Dev Dyn ; 240(10): 2309-23, 2011 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-21905165

RESUMO

Neural crest cells give rise to a diverse range of structures during vertebrate development. These cells initially exist in the dorsal neuroepithelium and subsequently acquire the capacity to migrate. Although studies have documented the importance of adherens junctions in regulating neural crest cell migration, little attention has been paid to tight junctions during this process. We now identify the tight junction protein cingulin as a key regulator of neural crest migration. Cingulin knock-down increases the migratory neural crest cell domain, which is correlated with a disruption of the neural tube basal lamina. Overexpression of cingulin also augments neural crest cell migration and is associated with similar basal lamina changes and an expansion of the premigratory neural crest population. Cingulin overexpression causes aberrant ventrolateral neuroepithelial cell delamination, which is linked to laminin loss and a decrease in RhoA. Together, our results highlight a novel function for cingulin in the neural crest.


Assuntos
Movimento Celular/fisiologia , Proteínas de Membrana/metabolismo , Proteínas dos Microfilamentos/metabolismo , Morfogênese/fisiologia , Crista Neural/citologia , Crista Neural/metabolismo , Junções Íntimas/metabolismo , Animais , Membrana Basal/fisiologia , Embrião de Galinha/anatomia & histologia , Embrião de Galinha/fisiologia , Hibridização In Situ , Proteínas de Membrana/genética , Proteínas dos Microfilamentos/genética , Crista Neural/embriologia , Tubo Neural/citologia , Tubo Neural/metabolismo , Proteína rhoA de Ligação ao GTP/metabolismo
2.
Mol Biol Cell ; 25(1): 41-54, 2014 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-24196837

RESUMO

The epithelial-to-mesenchymal transition (EMT) is a highly coordinated process underlying both development and disease. Premigratory neural crest cells undergo EMT, migrate away from the neural tube, and differentiate into diverse cell types during vertebrate embryogenesis. Adherens junction disassembly within premigratory neural crest cells is one component of EMT and, in chick cranial neural crest cells, involves cadherin-6B (Cad6B) down-regulation. Whereas Cad6B transcription is repressed by Snail2, the rapid loss of Cad6B protein during EMT is suggestive of posttranslational mechanisms that promote Cad6B turnover. For the first time in vivo, we demonstrate Cad6B proteolysis during neural crest cell EMT, which generates a Cad6B N-terminal fragment (NTF) and two C-terminal fragments (CTF1/2). Coexpression of relevant proteases with Cad6B in vitro shows that a disintegrin and metalloproteinases (ADAMs) ADAM10 and ADAM19, together with γ-secretase, cleave Cad6B to produce the NTF and CTFs previously observed in vivo. Of importance, both ADAMs and γ-secretase are expressed in the appropriate spatiotemporal pattern in vivo to proteolytically process Cad6B. Overexpression or depletion of either ADAM within premigratory neural crest cells prematurely reduces or maintains Cad6B, respectively. Collectively these results suggest a dual mechanism for Cad6B proteolysis involving two ADAMs, along with γ-secretase, during cranial neural crest cell EMT.


Assuntos
Proteínas Aviárias/metabolismo , Caderinas/metabolismo , Transição Epitelial-Mesenquimal , Crista Neural/citologia , Crânio/embriologia , Proteínas ADAM/metabolismo , Secretases da Proteína Precursora do Amiloide/metabolismo , Animais , Células CHO , Movimento Celular , Embrião de Galinha , Cricetinae , Cricetulus , Regulação da Expressão Gênica no Desenvolvimento , Regulação Enzimológica da Expressão Gênica , Fragmentos de Peptídeos/metabolismo , Processamento de Proteína Pós-Traducional , Proteólise , Crânio/citologia , Transcrição Gênica
3.
Mech Dev ; 129(9-12): 275-83, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-22771518

RESUMO

The neural crest is a population of migratory cells that follows specific pathways during development, eventually differentiating to form parts of the face, heart, and peripheral nervous system, the latter of which includes contributions from placodal cells derived from the ectoderm. Stationary, premigratory neural crest cells acquire the capacity to migrate by undergoing an epithelial-to-mesenchymal transition that facilitates their emigration from the dorsal neural tube. This emigration involves, in part, the dismantling of cell-cell junctions, including apically localized tight junctions in the neuroepithelium. In this study, we have characterized the role of the transmembrane tight junction protein claudin-1 during neural crest and placode ontogeny. Our data indicate that claudin-1 is highly expressed in the developing neuroepithelium but is down-regulated in migratory neural crest cells, although expression persists in the ectoderm from which the placode cells arise. Depletion or overexpression of claudin-1 augments or reduces neural crest cell emigration, respectively, but does not impact the development of several cranial placodes. Taken together, our results reveal a novel function for a tight junction protein in the formation of migratory cranial neural crest cells in the developing vertebrate embryo.


Assuntos
Movimento Celular/fisiologia , Claudina-1/fisiologia , Regulação da Expressão Gênica no Desenvolvimento , Crista Neural/fisiologia , Animais , Movimento Celular/genética , Embrião de Galinha , Galinhas , Claudina-1/biossíntese , Claudina-1/genética , Claudina-1/metabolismo , Regulação para Baixo , Ectoderma/crescimento & desenvolvimento , Ectoderma/metabolismo , Epitélio/metabolismo , Crista Neural/metabolismo , Tubo Neural/metabolismo , Tubo Neural/fisiologia , Neurônios/citologia , Neurônios/metabolismo , Neurônios/fisiologia , Junções Íntimas/genética , Junções Íntimas/metabolismo
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