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1.
Am J Pathol ; 177(5): 2516-26, 2010 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-20934968

RESUMEN

Signaling pathways that underlie postnatal dental and periodontal physiopathology are less studied than those of early tooth development. Members of the muscle segment homeobox gene (Msx) family encode homeoproteins that show functional redundancy during development and are known to be involved in epithelial-mesenchymal interactions that lead to crown morphogenesis and ameloblast cell differentiation. This study analyzed the MSX2 protein during mouse postnatal growth as well as in the adult. The analysis focused on enamel and periodontal defects and enamel proteins in Msx2-null mutant mice. In the epithelial lifecycle, the levels of MSX2 expression and enamel protein secretion were inversely related. Msx2+/- mice showed increased amelogenin expression, enamel thickness, and rod size. Msx2-/- mice displayed compound phenotypic characteristics of enamel defects, related to both enamel-specific gene mutations (amelogenin and enamelin) in isolated amelogenesis imperfecta, and cell-cell junction elements (laminin 5 and cytokeratin 5) in other syndromes. These effects were also related to ameloblast disappearance, which differed between incisors and molars. In Msx2-/- roots, Malassez cells formed giant islands that overexpressed amelogenin and ameloblastin that grew over months. Aberrant expression of enamel proteins is proposed to underlie the regional osteopetrosis and hyperproduction of cellular cementum. These enamel and periodontal phenotypes of Msx2 mutants constitute the first case report of structural and signaling defects associated with enamel protein overexpression in a postnatal context.


Asunto(s)
Proteínas del Esmalte Dental/metabolismo , Proteínas de Homeodominio/genética , Proteínas de Homeodominio/metabolismo , Mutación , Periodoncio/fisiología , Diente/fisiología , Amelogenina/genética , Amelogenina/metabolismo , Animales , Proteínas del Esmalte Dental/genética , Incisivo/metabolismo , Ratones , Ratones Noqueados , Ratones Transgénicos , Periodoncio/citología , Transducción de Señal/fisiología , Diente/ultraestructura
2.
Cells Tissues Organs ; 189(1-4): 126-32, 2009.
Artículo en Inglés | MEDLINE | ID: mdl-18769023

RESUMEN

Craniofacial development involves a large number of genes involved in a complex time- and site-specific cascade of cellular crosstalk. Msx homeobox genes are expressed very early and have been implicated in multiple signaling processes. However, little is known about their role in postnatal growth and at adult stages. The aim of this study was to compare the patterns of expression of Msx1 and Msx2 during postnatal growth and homeostasis. We used transgenic mice with a knock-in for Msx1 or Msx2. Msx expression was analyzed on whole-mount experiments on heterozygous mice. The results were confirmed by quantitative RT-PCR on mandible and tibia samples. Steady-state levels of Msx2 mRNA were determined at 2 ages, at postnatal day 14 and after 3 months, corresponding to phases of growth and homeostasis, respectively. Consistent with previous findings, the expression profiles of Msx1 and Msx2 overlapped during embryonic development. By contrast, marked differences in the patterns of expression of these 2 genes were observed during the growth phase. Msx1 was found to be expressed in basal bone during postnatal growth. Msx1 was not expressed in alveolar bone, whereas Msx2 was strongly and continually expressed. Msx2 was present in all growth plate cartilages, as previously shown for Msx1. Autopods displayed different patterns of expression during the mouse life cycle, with continuous expression of Msx1 only. Interestingly, both secretory cells (osteoblasts) and cells involved in bone resorption (osteoclasts) were found to be involved in Msx molecular pathways, their precise involvement depending on the anatomical site. The observed patterns correspond to specific sites during growth and constitute landmarks in our understanding of growth-related oral facial dysmorphologies.


Asunto(s)
Genes Homeobox , Proteínas de Homeodominio/genética , Factor de Transcripción MSX1/genética , Maxilar/metabolismo , Animales , Animales Recién Nacidos , Cara , Regulación del Desarrollo de la Expresión Génica , Proteínas de Homeodominio/metabolismo , Homeostasis , Operón Lac , Factor de Transcripción MSX1/metabolismo , Mandíbula/crecimiento & desarrollo , Mandíbula/metabolismo , Maxilar/citología , Maxilar/crecimiento & desarrollo , Ratones , Ratones Transgénicos , ARN Mensajero/genética , ARN Mensajero/metabolismo , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa
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