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1.
J Biol Chem ; 281(17): 12123-31, 2006 Apr 28.
Artigo em Inglês | MEDLINE | ID: mdl-16510447

RESUMO

We previously showed the selective expression of the chondroitin sulfate proteoglycans versican V0 and V1 in barrier tissues that impede the migration of neural crest cells during embryonic trunk development (Landolt, R. M., Vaughan, L., Winterhalter, K. H., and Zimmermann, D. R. (1995) Development 212, 2303-2312). To test for an active involvement of these isoforms in the guidance process, we have now established protocols to isolate intact versican V0 and V1 in quantities sufficient for functional experiments. Using stripe choice assays, we demonstrate that pure preparations of either a mixture of versican V0/V1 or V1 alone strongly inhibit the migration of multipotent Sox10/p75NTR double-positive early neural crest stem cells on fibronectin by interfering with cell-substrate adhesion. We show that this inhibition is largely core glycoprotein-dependent, as the complete removal of the glycosaminoglycan chains has only a minor effect on the inhibitory capacity. Our findings support the notion that versican variants V0 and V1 act, possibly in concert with other inhibitory molecules such as aggrecan and ephrins, in directing the migratory streams of neural crest cells to their appropriate target tissues.


Assuntos
Adesão Celular , Movimento Celular , Proteoglicanas de Sulfatos de Condroitina/fisiologia , Lectinas Tipo C/fisiologia , Crista Neural/citologia , Células-Tronco/metabolismo , Animais , Aorta/citologia , Aorta/metabolismo , Bovinos , Células Cultivadas , Fibronectinas/metabolismo , Glioma/metabolismo , Glioma/patologia , Glicoproteínas/metabolismo , Glicosaminoglicanos/metabolismo , Humanos , Crista Neural/metabolismo , Ratos , Medula Espinal/citologia , Medula Espinal/metabolismo , Versicanas
2.
J Cell Biol ; 169(2): 309-20, 2005 Apr 25.
Artigo em Inglês | MEDLINE | ID: mdl-15837799

RESUMO

Canonical Wnt signaling instructively promotes sensory neurogenesis in early neural crest stem cells (eNCSCs) (Lee, H.Y., M. Kleber, L. Hari, V. Brault, U. Suter, M.M. Taketo, R. Kemler, and L. Sommer. 2004. Science. 303:1020-1023). However, during normal development Wnt signaling induces a sensory fate only in a subpopulation of eNCSCs while other cells maintain their stem cell features, despite the presence of Wnt activity. Hence, factors counteracting Wnt signaling must exist. Here, we show that bone morphogenic protein (BMP) signaling antagonizes the sensory fate-inducing activity of Wnt/beta-catenin. Intriguingly, Wnt and BMP act synergistically to suppress differentiation and to maintain NCSC marker expression and multipotency. Similar to NCSCs in vivo, NCSCs maintained in culture alter their responsiveness to instructive growth factors with time. Thus, stem cell development is regulated by combinatorial growth factor activities that interact with changing cell-intrinsic cues.


Assuntos
Proteínas Morfogenéticas Ósseas/metabolismo , Peptídeos e Proteínas de Sinalização Intercelular/metabolismo , Crista Neural/embriologia , Células-Tronco Pluripotentes/fisiologia , Transdução de Sinais/fisiologia , Animais , Diferenciação Celular/fisiologia , Linhagem da Célula/fisiologia , Células Cultivadas , Proteínas do Citoesqueleto/metabolismo , Camundongos , Crista Neural/citologia , Células-Tronco Pluripotentes/citologia , Ratos , Transativadores/metabolismo , Proteínas Wnt , beta Catenina
3.
Curr Opin Cell Biol ; 16(6): 681-7, 2004 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-15530781

RESUMO

Canonical Wnt signaling plays a crucial role in controlling cell expansion in many types of stem cells. Recent studies, however, demonstrated that Wnt is not only a general stem cell growth factor but can also influence cell lineage decisions in certain stem cell types by promoting specific fates at the expense of others. Thus, Wnt signaling elicits multiple functions in stem cells. Wnt activity appears to depend on cell-intrinsic properties that might change with time during development, thereby altering the cellular response to Wnt. Moreover, the spatial context of a stem cell also determines how the cell interprets Wnt signal activity, in that synergistic or antagonistic signaling pathways can modulate Wnt signaling. How a stem cell integrates Wnt and other signals and how such signaling networks regulate stem cell function on the molecular level remains to be elucidated.


Assuntos
Peptídeos e Proteínas de Sinalização Intercelular/metabolismo , Transdução de Sinais , Células-Tronco/metabolismo , Células-Tronco/fisiologia , Animais , Linhagem da Célula , Proliferação de Células , Humanos , Modelos Biológicos , Células-Tronco/patologia , Proteínas Wnt
4.
Science ; 303(5660): 1020-3, 2004 Feb 13.
Artigo em Inglês | MEDLINE | ID: mdl-14716020

RESUMO

Wnt signaling has recently emerged as a key factor in controlling stem cell expansion. In contrast, we show here that Wnt/beta-catenin signal activation in emigrating neural crest stem cells (NCSCs) has little effect on the population size and instead regulates fate decisions. Sustained beta-catenin activity in neural crest cells promotes the formation of sensory neural cells in vivo at the expense of virtually all other neural crest derivatives. Moreover, Wnt1 is able to instruct early NCSCs (eNCSCs) to adopt a sensory neuronal fate in a beta-catenin-dependent manner. Thus, the role of Wnt/beta-catenin in stem cells is cell-type dependent.


Assuntos
Proteínas do Citoesqueleto/metabolismo , Células-Tronco Multipotentes/fisiologia , Crista Neural/citologia , Neurônios Aferentes/citologia , Proteínas Proto-Oncogênicas/metabolismo , Transdução de Sinais , Transativadores/metabolismo , Proteínas de Peixe-Zebra , Animais , Fatores de Transcrição Hélice-Alça-Hélice Básicos , Caderinas/metabolismo , Diferenciação Celular , Divisão Celular , Linhagem da Célula , Movimento Celular , Células Cultivadas , Sistema Nervoso Central/embriologia , Proteínas de Ligação a DNA/metabolismo , Camundongos , Modelos Neurológicos , Mutação , Proteínas do Tecido Nervoso/metabolismo , Crista Neural/embriologia , Crista Neural/fisiologia , Neurônios Aferentes/fisiologia , Fator de Transcrição Brn-3 , Fatores de Transcrição/metabolismo , Proteínas Wnt , Proteína Wnt1 , beta Catenina
5.
J Cell Biol ; 159(5): 867-80, 2002 Dec 09.
Artigo em Inglês | MEDLINE | ID: mdl-12473692

RESUMO

Beta-catenin plays a pivotal role in cadherin-mediated cell adhesion. Moreover, it is a downstream signaling component of Wnt that controls multiple developmental processes such as cell proliferation, apoptosis, and fate decisions. To study the role of beta-catenin in neural crest development, we used the Cre/loxP system to ablate beta-catenin specifically in neural crest stem cells. Although several neural crest-derived structures develop normally, mutant animals lack melanocytes and dorsal root ganglia (DRG). In vivo and in vitro analyses revealed that mutant neural crest cells emigrate but fail to generate an early wave of sensory neurogenesis that is normally marked by the transcription factor neurogenin (ngn) 2. This indicates a role of beta-catenin in premigratory or early migratory neural crest and points to heterogeneity of neural crest cells at the earliest stages of crest development. In addition, migratory neural crest cells lateral to the neural tube do not aggregate to form DRG and are unable to produce a later wave of sensory neurogenesis usually marked by the transcription factor ngn1. We propose that the requirement of beta-catenin for the specification of melanocytes and sensory neuronal lineages reflects roles of beta-catenin both in Wnt signaling and in mediating cell-cell interactions.


Assuntos
Proteínas do Citoesqueleto/fisiologia , Crista Neural/embriologia , Transativadores/fisiologia , Animais , Fatores de Transcrição Hélice-Alça-Hélice Básicos , Biomarcadores/análise , Comunicação Celular , Diferenciação Celular , Linhagem da Célula , Células Cultivadas , Cruzamentos Genéticos , Proteínas do Citoesqueleto/genética , Gânglios Espinais/citologia , Gânglios Espinais/embriologia , Regulação da Expressão Gênica no Desenvolvimento , Inativação Gênica , Sequências Hélice-Alça-Hélice , Melanócitos/citologia , Camundongos , Camundongos Mutantes , Modelos Biológicos , Proteínas do Tecido Nervoso/metabolismo , Crista Neural/citologia , Crista Neural/fisiologia , Neuroglia/citologia , Neurônios/citologia , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Recombinação Genética , Células-Tronco/citologia , Células-Tronco/fisiologia , Transativadores/genética , beta Catenina
6.
Int J Dev Biol ; 46(1): 193-200, 2002 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-11902683

RESUMO

Multipotent stem cells must generate various differentiated cell types in correct number and sequence during neural development. In the peripheral nervous system (PNS), this involves the formation of postmigratory progenitor cell types which maintain multipotency and are able to give rise to neural and non-neural cells in response to instructive growth factors. We propose that fate restrictions in such progenitor cells are controlled by the combinatorial interaction of different extracellular signals, including community effects in response to both neurogenic and gliogenic factors. In addition, distinct progenitor cell types display intrinsic differences which modulate their response to the extracellular environment. Thus, a progenitor cell is apparently able to integrate multiple intrinsic and extrinsic cues and thereby to choose fates appropriate for its location. Fate analysis of genetically modified progenitor cells will help to identify the molecules involved. This approach appears promising given the identification of multipotent progenitor cells from the mouse PNS and the availability of genetics in the mouse system.


Assuntos
Linhagem da Célula , Crista Neural/embriologia , Neurônios/citologia , Células-Tronco , Animais , Bromodesoxiuridina/farmacologia , Diferenciação Celular , Imuno-Histoquímica , Hibridização In Situ , Camundongos , Modelos Biológicos , Sistema Nervoso Periférico/embriologia , Ratos , Fator de Crescimento Transformador beta/metabolismo
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