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1.
Mol Cell Neurosci ; 60: 97-107, 2014 May.
Artículo en Inglés | MEDLINE | ID: mdl-24747870

RESUMEN

GABABRs have a well-established role in controlling neuronal excitability and presynaptic neurotransmitter release. We examined the role of GABABR activity in modulating the number and lateral diffusion of GABAARs at inhibitory synapses. Changes in diffusion of GABAARs at synapses were observed when subunit heterogeneity was taken into account. While α1-GABAARs were unaffected, α2- and α5-GABAARs showed inverse changes in enrichment and diffusion. The intracellular TM3-4 loop of α2 was sufficient to observe the changes in diffusion by GABABR activity, whereas the loop of α5 was not. The opposing effect on α2- and α5-GABAARs was caused by a competition between GABAARs for binding slots at synapses. Receptor immobilization by cross-linking revealed that α5-GABAAR trapping at synapses is regulated by modulation of α2-GABAAR mobility. Finally, PKC activity was determined to be part of the signaling pathway through which GABABR activity modulates α2-GABAAR diffusion at synapses. These results outline a novel mechanism for tuning inhibitory transmission in a subunit-specific manner, and for the first time describe competition between GABAARs with different subunit compositions for binding slots at synapses.


Asunto(s)
Multimerización de Proteína , Receptores de GABA-A/metabolismo , Receptores de GABA-B/metabolismo , Sinapsis/metabolismo , Transmisión Sináptica , Animales , Hipocampo/citología , Hipocampo/metabolismo , Ratones , Neuronas/metabolismo , Neuronas/fisiología , Proteína Quinasa C/metabolismo , Estructura Terciaria de Proteína , Subunidades de Proteína/química , Subunidades de Proteína/metabolismo , Transporte de Proteínas , Receptores de GABA-A/química , Receptores de GABA-B/química , Sinapsis/fisiología
2.
Proc Natl Acad Sci U S A ; 103(25): 9595-600, 2006 Jun 20.
Artículo en Inglés | MEDLINE | ID: mdl-16769894

RESUMEN

ALS2 is an autosomal recessive form of spastic paraparesis (motor neuron disease) with juvenile onset and slow progression caused by loss of function of alsin, an activator of Rac1 and Rab5 small GTPases. To establish an animal model of ALS2 and derive insights into the pathogenesis of this illness, we have generated alsin-null mice. Cytosol from brains of Als2(-/-) mice shows marked diminution of Rab5-dependent endosome fusion activity. Furthermore, primary neurons from Als2(-/-) mice show a disturbance in endosomal transport of insulin-like growth factor 1 (IGF1) and BDNF receptors, whereas neuronal viability and endocytosis of transferrin and dextran seem unaltered. There is a significant decrease in the size of cortical motor neurons, and Als2(-/-) mice are mildly hypoactive. Altered trophic receptor trafficking in neurons of Als2(-/-) mice may underlie the histopathological and behavioral changes observed and the pathogenesis of ALS2.


Asunto(s)
Endosomas/metabolismo , Factores de Intercambio de Guanina Nucleótido/deficiencia , Factores de Intercambio de Guanina Nucleótido/metabolismo , Neuronas Motoras/metabolismo , Neuronas Motoras/patología , Trastornos de la Destreza Motora/patología , Trastornos de la Destreza Motora/fisiopatología , Animales , Conducta Animal , Peso Corporal , Citosol/metabolismo , Endocitosis , Endosomas/patología , Factores de Intercambio de Guanina Nucleótido/genética , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Actividad Motora , Condicionamiento Físico Animal , Transporte de Proteínas , Receptor trkB/metabolismo , Factores de Tiempo
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