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1.
Cell ; 139(2): 380-92, 2009 Oct 16.
Artículo en Inglés | MEDLINE | ID: mdl-19818485

RESUMEN

Synapses are asymmetric cellular adhesions that are critical for nervous system development and function, but the mechanisms that induce their formation are not well understood. We have previously identified thrombospondin as an astrocyte-secreted protein that promotes central nervous system (CNS) synaptogenesis. Here, we identify the neuronal thrombospondin receptor involved in CNS synapse formation as alpha2delta-1, the receptor for the anti-epileptic and analgesic drug gabapentin. We show that the VWF-A domain of alpha2delta-1 interacts with the epidermal growth factor-like repeats common to all thrombospondins. alpha2delta-1 overexpression increases synaptogenesis in vitro and in vivo and is required postsynaptically for thrombospondin- and astrocyte-induced synapse formation in vitro. Gabapentin antagonizes thrombospondin binding to alpha2delta-1 and powerfully inhibits excitatory synapse formation in vitro and in vivo. These findings identify alpha2delta-1 as a receptor involved in excitatory synapse formation and suggest that gabapentin may function therapeutically by blocking new synapse formation.


Asunto(s)
Antígenos CD36/metabolismo , Canales de Calcio/metabolismo , Neurogénesis , Sinapsis , Aminas/farmacología , Animales , Canales de Calcio Tipo L , Ácidos Ciclohexanocarboxílicos/farmacología , Gabapentina , Ratones , Plasticidad Neuronal , Neuronas/metabolismo , Ratas , Ratas Sprague-Dawley , Sinapsis/efectos de los fármacos , Ácido gamma-Aminobutírico/farmacología
2.
Proc Natl Acad Sci U S A ; 118(25)2021 06 22.
Artículo en Inglés | MEDLINE | ID: mdl-34135125

RESUMEN

Wnt5a-Ror signaling is a conserved pathway that regulates morphogenetic processes during vertebrate development [R. T. Moon et al, Development 119, 97-111 (1993); I. Oishi et al, Genes Cells 8, 645-654 (2003)], but its downstream signaling events remain poorly understood. Through a large-scale proteomic screen in mouse embryonic fibroblasts, we identified the E3 ubiquitin ligase Pdzrn3 as a regulatory target of the Wnt5a-Ror pathway. Upon pathway activation, Pdzrn3 is degraded in a ß-catenin-independent, ubiquitin-proteasome system-dependent manner. We developed a flow cytometry-based reporter to monitor Pdzrn3 abundance and delineated a signaling cascade involving Frizzled, Dishevelled, Casein kinase 1, and Glycogen synthase kinase 3 that regulates Pdzrn3 stability. Epistatically, Pdzrn3 is regulated independently of Kif26b, another Wnt5a-Ror effector. Wnt5a-dependent degradation of Pdzrn3 requires phosphorylation of three conserved amino acids within its C-terminal LNX3H domain [M. Flynn, O. Saha, P. Young, BMC Evol. Biol. 11, 235 (2011)], which acts as a bona fide Wnt5a-responsive element. Importantly, this phospho-dependent degradation is essential for Wnt5a-Ror modulation of cell migration. Collectively, this work establishes a Wnt5a-Ror cell morphogenetic cascade involving Pdzrn3 phosphorylation and degradation.


Asunto(s)
Proteómica , Receptores Huérfanos Similares al Receptor Tirosina Quinasa/metabolismo , Ubiquitina-Proteína Ligasas/metabolismo , Vía de Señalización Wnt , Proteína Wnt-5a/metabolismo , Animales , Movimiento Celular , Ratones , Fosforilación , Complejo de la Endopetidasa Proteasomal/metabolismo , Dominios Proteicos , Proteolisis , Reproducibilidad de los Resultados , Ubiquitina/metabolismo
3.
Proc Natl Acad Sci U S A ; 109(11): 4044-51, 2012 Mar 13.
Artículo en Inglés | MEDLINE | ID: mdl-22343533

RESUMEN

Wnts make up a large family of extracellular signaling molecules that play crucial roles in development and disease. A subset of noncanonical Wnts signal independently of the transcription factor ß-catenin by a mechanism that regulates key morphogenetic movements during embryogenesis. The best characterized noncanonical Wnt, Wnt5a, has been suggested to signal via a variety of different receptors, including the Ror family of receptor tyrosine kinases, the Ryk receptor tyrosine kinase, and the Frizzled seven-transmembrane receptors. Whether one or several of these receptors mediates the effects of Wnt5a in vivo is not known. Through loss-of-function experiments in mice, we provide conclusive evidence that Ror receptors mediate Wnt5a-dependent processes in vivo and identify Dishevelled phosphorylation as a physiological target of Wnt5a-Ror signaling. The absence of Ror signaling leads to defects that mirror phenotypes observed in Wnt5a null mutant mice, including decreased branching of sympathetic neuron axons and major defects in aspects of embryonic development that are dependent upon morphogenetic movements, such as severe truncation of the caudal axis, the limbs, and facial structures. These findings suggest that Wnt5a-Ror-Dishevelled signaling constitutes a core noncanonical Wnt pathway that is conserved through evolution and is crucial during embryonic development.


Asunto(s)
Proteínas Adaptadoras Transductoras de Señales/metabolismo , Desarrollo Embrionario , Morfogénesis , Fosfoproteínas/metabolismo , Receptores Huérfanos Similares al Receptor Tirosina Quinasa/metabolismo , Proteínas Wnt/metabolismo , Vía de Señalización Wnt , Animales , Axones/metabolismo , Proteínas Dishevelled , Embrión de Mamíferos/metabolismo , Embrión de Mamíferos/patología , Desarrollo Embrionario/genética , Regulación del Desarrollo de la Expresión Génica , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Morfogénesis/genética , Fosforilación , Proteínas Proto-Oncogénicas c-jun/metabolismo , Receptores Huérfanos Similares al Receptor Tirosina Quinasa/genética , Sistema Nervioso Simpático/crecimiento & desarrollo , Proteínas Wnt/deficiencia , Proteína Wnt-5a
4.
Bio Protoc ; 8(6)2018 Mar 20.
Artículo en Inglés | MEDLINE | ID: mdl-29770348

RESUMEN

Noncanonical Wnt signaling functions independently of the ß-catenin pathway to control diverse developmental processes, and dysfunction of the pathway contributes to a number of human pathological conditions, including birth defects and metastatic cancer. Progress in the field, however, has been hampered by the scarcity of functional assays for measuring noncanonical Wnt signaling activity. We recently described the Wnt5a-Ror-Kif26b (WRK) reporter assay, which directly monitors a post-transcriptional regulatory event in noncanonical Wnt signaling. In this protocol, we describe the generation of the stable GFP-Kif26b reporter cell line and a quantitative reporter assay for detecting and measuring Wnt5a signaling activities in live cells via flow cytometry.

5.
J Neurosci ; 26(23): 6269-81, 2006 Jun 07.
Artículo en Inglés | MEDLINE | ID: mdl-16763034

RESUMEN

Neuronal pentraxins (NPs) define a family of proteins that are homologous to C-reactive and acute-phase proteins in the immune system and have been hypothesized to be involved in activity-dependent synaptic plasticity. To investigate the role of NPs in vivo, we generated mice that lack one, two, or all three NPs. NP1/2 knock-out mice exhibited defects in the segregation of eye-specific retinal ganglion cell (RGC) projections to the dorsal lateral geniculate nucleus, a process that involves activity-dependent synapse formation and elimination. Retinas from mice lacking NP1 and NP2 had cholinergically driven waves of activity that occurred at a frequency similar to that of wild-type mice, but several other parameters of retinal activity were altered. RGCs cultured from these mice exhibited a significant delay in functional maturation of glutamatergic synapses. Other developmental processes, such as pathfinding of RGCs at the optic chiasm and hippocampal long-term potentiation and long-term depression, appeared normal in NP-deficient mice. These data indicate that NPs are necessary for early synaptic refinements in the mammalian retina and dorsal lateral geniculate nucleus. We speculate that NPs exert their effects through mechanisms that parallel the known role of short pentraxins outside the CNS.


Asunto(s)
Proteína C-Reactiva/fisiología , Cuerpos Geniculados/fisiología , Proteínas del Tejido Nervioso/fisiología , Neuronas/metabolismo , Retina/fisiología , Sinapsis/fisiología , Vías Visuales/fisiología , Animales , Células Cultivadas , Cuerpos Geniculados/crecimiento & desarrollo , Ácido Glutámico/metabolismo , Hipocampo/fisiología , Ratones , Ratones Noqueados , Plasticidad Neuronal , Retina/citología , Retina/crecimiento & desarrollo , Células Ganglionares de la Retina/fisiología , Sinapsis/metabolismo , Transmisión Sináptica/fisiología , Vías Visuales/crecimiento & desarrollo
6.
Elife ; 62017 09 08.
Artículo en Inglés | MEDLINE | ID: mdl-28885975

RESUMEN

Wnt5a-Ror signaling constitutes a developmental pathway crucial for embryonic tissue morphogenesis, reproduction and adult tissue regeneration, yet the molecular mechanisms by which the Wnt5a-Ror pathway mediates these processes are largely unknown. Using a proteomic screen, we identify the kinesin superfamily protein Kif26b as a downstream target of the Wnt5a-Ror pathway. Wnt5a-Ror, through a process independent of the canonical Wnt/ß-catenin-dependent pathway, regulates the cellular stability of Kif26b by inducing its degradation via the ubiquitin-proteasome system. Through this mechanism, Kif26b modulates the migratory behavior of cultured mesenchymal cells in a Wnt5a-dependent manner. Genetic perturbation of Kif26b function in vivo caused embryonic axis malformations and depletion of primordial germ cells in the developing gonad, two phenotypes characteristic of disrupted Wnt5a-Ror signaling. These findings indicate that Kif26b links Wnt5a-Ror signaling to the control of morphogenetic cell and tissue behaviors in vertebrates and reveal a new role for regulated proteolysis in noncanonical Wnt5a-Ror signal transduction.


Asunto(s)
Cinesinas/metabolismo , Transducción de Señal , Proteína Wnt-5a/metabolismo , Animales , Línea Celular , Desarrollo Embrionario/fisiología , Regulación del Desarrollo de la Expresión Génica , Células HEK293 , Humanos , Cinesinas/genética , Ratones , Ratones Endogámicos C57BL , Morfogénesis/efectos de los fármacos , Proteómica , Receptores Huérfanos Similares al Receptor Tirosina Quinasa/genética , Receptores Huérfanos Similares al Receptor Tirosina Quinasa/metabolismo , Vía de Señalización Wnt , Proteína Wnt-5a/farmacología , beta Catenina/metabolismo
7.
Neuron ; 59(3): 425-38, 2008 Aug 14.
Artículo en Inglés | MEDLINE | ID: mdl-18701068

RESUMEN

Our understanding of how mammalian sensory circuits are organized and develop has long been hindered by the lack of genetic markers of neurons with discrete functions. Here, we report a transgenic mouse selectively expressing GFP in a complete mosaic of transient OFF-alpha retinal ganglion cells (tOFF-alphaRGCs). This enabled us to relate the mosaic spacing, dendritic anatomy, and electrophysiology of these RGCs to their complete map of projections in the brain. We find that tOFF-alphaRGCs project exclusively to the superior colliculus (SC) and dorsal lateral geniculate nucleus and are restricted to a specific laminar depth within each of these targets. The axons of tOFF-alphaRGC are also organized into columns in the SC. Both laminar and columnar specificity develop through axon refinement. Disruption of cholinergic retinal waves prevents the emergence of columnar- but not laminar-specific tOFF-alphaRGC connections. Our findings reveal that in a genetically identified sensory map, spontaneous activity promotes synaptic specificity by segregating axons arising from RGCs of the same subtype.


Asunto(s)
Axones/metabolismo , Mapeo Encefálico , Dendritas/metabolismo , Retina/citología , Células Ganglionares de la Retina/fisiología , Colículos Superiores/fisiología , Animales , Animales Recién Nacidos , Toxina del Cólera/genética , Toxina del Cólera/metabolismo , Regulación del Desarrollo de la Expresión Génica/fisiología , Cuerpos Geniculados/fisiología , Proteínas Fluorescentes Verdes/genética , Proteínas Fluorescentes Verdes/metabolismo , Indoles , Potenciales de la Membrana/genética , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Proteínas del Tejido Nervioso/genética , Proteínas del Tejido Nervioso/metabolismo , Técnicas de Placa-Clamp/métodos , Receptores Nicotínicos/deficiencia , Células Ganglionares de la Retina/citología , Proteínas de Transporte Vesicular de Acetilcolina/metabolismo , Vías Visuales/fisiología
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