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1.
Mol Cell Neurosci ; 118: 103693, 2022 01.
Artigo em Inglês | MEDLINE | ID: mdl-34942345

RESUMO

Insulin and insulin-like growth factor type I (IGF-1) play prominent roles in brain activity throughout the lifespan. Insulin/IGF1 signaling starts with the activation of the intracellular insulin receptor substrates (IRS). In this work, we performed a comparative study of IRS1 and IRS2, together with the IGF1 (IGF1R) and insulin (IR) receptor expression in the hippocampus and prefrontal cortex during development. We found that IRS1 and IRS2 expression is prominent during development and declines in the aged hippocampus, contrary to IR, which increases in adulthood and aging. In contrast, IGF1R expression is unaffected by age. Expression patterns are similar in the prefrontal cortex. Neurite development occurs postnatally in the rodent hippocampus and cortex, and it declines in the mature and aged brain and is influenced by trophic factors. In our previous work, we demonstrated that knockdown of IRS1 by shRNA impairs learning and reduces synaptic plasticity in a rat model, as measured by synaptophysin puncta in axons. In this study, we report that shIRS1 alters spine maturation in adult hilar hippocampal neurons. Lastly, to understand the role of IRS1 in neuronal neurite tree, we transfect shIRS1 into primary neuronal cultures and observed that shIRS1 reduced neurite branching and neurite length. Our results demonstrate that IRS1/2 and insulin/IGF1 receptors display different age-dependent expression profiles and that IRS1 is required for spine maturation, demonstrating a novel role for IRS1 in synaptic plasticity.


Assuntos
Hipocampo , Proteínas Substratos do Receptor de Insulina , Insulina , Animais , Hipocampo/metabolismo , Insulina/metabolismo , Proteínas Substratos do Receptor de Insulina/genética , Proteínas Substratos do Receptor de Insulina/metabolismo , Neurogênese , Ratos , Transdução de Sinais
2.
Front Neuroanat ; 15: 674649, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34239421

RESUMO

Spatial learning and memory processes depend on anatomical and functional interactions between the hippocampus and the entorhinal cortex. A key neurophysiological component of these processes is hippocampal theta rhythm, which can be driven from subcortical areas including the pontine nucleus incertus (NI). The NI contains the largest population of neurons that produce and presumably release the neuropeptide, relaxin-3, which acts via the G i/o -protein-coupled receptor, relaxin-family peptide 3 receptor (RXFP3). NI activation induces general arousal including hippocampal theta, and inactivation induces impairment of spatial memory acquisition or retrieval. The primary aim of this study was to map the NI/relaxin-3 innervation of the parahippocampal cortex (PHC), including the medial and lateral entorhinal cortex, endopiriform cortex, perirhinal, postrhinal, and ectorhinal cortex, the amygdalohippocampal transition area and posteromedial cortical amygdala. Retrograde tracer injections were placed in different parts of the medial and lateral entorhinal cortex, which produced prominent retrograde labeling in the ipsilateral NI and some labeling in the contralateral NI. Anterograde tracer injections into the NI and immunostaining for relaxin-3 produced fiber labeling in deep layers of all parahippocampal areas and some dispersed fibers in superficial layers. Double-labeling studies revealed that both hippocampal projecting and calcium-binding protein-positive (presumed GABAergic) neurons received a relaxin-3 NI innervation. Some of these fibers also displayed synaptophysin (Syn) immunoreactivity, consistent with the presence of the peptide at synapses; and relaxin-3-positive fibers containing Syn bouton-like staining were frequently observed in contact with hippocampal-projecting or calcium-binding protein-positive neuronal somata and more distal elements. Finally, in situ hybridization studies revealed that entorhinal neurons in the superficial layers, and to a lesser extent in deep layers, contain RXFP3 mRNA. Together, our data support functional actions of the NI/relaxin-3-parahippocampal innervation on processes related to memory, spatial navigation and contextual analysis.

3.
Brain Struct Funct ; 224(1): 453-469, 2019 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-30368554

RESUMO

In mammals, the extended amygdala is a neural hub for social and emotional information processing. In the rat, the extended amygdala receives inhibitory GABAergic projections from the nucleus incertus (NI) in the pontine tegmentum. NI neurons produce the neuropeptide relaxin-3, which acts via the Gi/o-protein-coupled receptor, RXFP3. A putative role for RXFP3 signalling in regulating social interaction was investigated by assessing the effect of intracerebroventricular infusion of the RXFP3 agonist, RXFP3-A2, on performance in the 3-chamber social interaction paradigm. Central RXFP3-A2, but not vehicle, infusion, disrupted the capacity to discriminate between a familiar and novel conspecific subject, but did not alter differentiation between a conspecific and an inanimate object. Subsequent studies revealed that agonist-infused rats displayed increased phosphoERK(pERK)-immunoreactivity in specific amygdaloid nuclei at 20 min post-infusion, with levels similar to control again after 90 min. In parallel, we used immunoblotting to profile ERK phosphorylation dynamics in whole amygdala after RXFP3-A2 treatment; and multiplex histochemical labelling techniques to reveal that after RXFP3-A2 infusion and social interaction, pERK-immunopositive neurons in amygdala expressed vesicular GABA-transporter mRNA and displayed differential profiles of RXFP3 and oxytocin receptor mRNA. Overall, these findings demonstrate that central relaxin-3/RXFP3 signalling can modulate social recognition in rats via effects within the amygdala and likely interactions with GABA and oxytocin signalling.


Assuntos
Tonsila do Cerebelo/efeitos dos fármacos , Comportamento Animal/efeitos dos fármacos , MAP Quinases Reguladas por Sinal Extracelular/metabolismo , Neurônios GABAérgicos/efeitos dos fármacos , Peptídeos/administração & dosagem , Receptores Acoplados a Proteínas G/agonistas , Receptores de Peptídeos/agonistas , Reconhecimento Psicológico/efeitos dos fármacos , Comportamento Social , Ácido gama-Aminobutírico/metabolismo , Tonsila do Cerebelo/citologia , Tonsila do Cerebelo/enzimologia , Animais , Neurônios GABAérgicos/enzimologia , Infusões Intraventriculares , Peptídeos e Proteínas de Sinalização Intercelular , Masculino , Ocitocina/metabolismo , Fosforilação , Ratos Wistar , Receptores Acoplados a Proteínas G/genética , Receptores Acoplados a Proteínas G/metabolismo , Receptores de Ocitocina/genética , Receptores de Ocitocina/metabolismo , Receptores de Peptídeos/genética , Receptores de Peptídeos/metabolismo , Transdução de Sinais/efeitos dos fármacos , Proteínas Vesiculares de Transporte de Aminoácidos Inibidores/genética , Proteínas Vesiculares de Transporte de Aminoácidos Inibidores/metabolismo
4.
Rev. neurol. (Ed. impr.) ; 67(5): 175-186, 1 sept., 2018. graf, tab
Artigo em Espanhol | IBECS | ID: ibc-175172

RESUMO

La ingesta de alcohol está facilitada por la relación con la conducta alimentaria, y ambas conductas están altamente influidas por situaciones de estrés y ansiedad. La desregulación de estos procesos puede llegar a situaciones patológicas, como la anorexia, la bulimia o la obesidad. Los elementos neurobiológicos que subyacen a este control no están completamente esclarecidos. El núcleo incertus (NI) en el tegmento pontino constituye un elemento común a la ingesta y a la adicción al alcohol. Las neuronas del NI utilizan como señalización el neuropéptido relaxina-3 (RLN3) y su receptor RXFP3. En esta revisión se analiza la participación del sistema NI-RLN3-RXFP3 en estas conductas bajo condiciones de ansiedad o estrés en modelos animales. La activación del NI tiene un efecto positivo sobre la ingesta (orexígeno) y desarrolla una respuesta amplia en la amígdala, donde se modulan los estados de ansiedad. La actividad de RLN3-RXFP3 en la amígdala podría afectar a la adicción al alcohol, ya que la aplicación del antagonista de RXFP3 en la amígdala extendida atenúa la recaída al alcohol inducida por el estrés. Los datos neuroanatómicos indican que el sistema NI-RLN3-RXFP3 actúa sobre la conducta de ingesta y adicción al alcohol mediante proyecciones paralelas a las vías canónicas mesolímbicas. Con ello, los datos en modelos animales indican que el sistema NI-RLN3-RXFP3 debería tenerse en cuenta como diana en el tratamiento futuro de trastornos de las conductas alimentarias y adictivas


Alcohol intake is facilitated by its relationship with eating behavior and both processes are highly influenced by situations of stress and anxiety. The dysregulation of these processes can reach pathological situations such as anorexia, bulimia or obesity. The neurobiological elements which underlie this control are not completely clarified. The nucleus incertus (NI) in the pontine tegmentum is a common element in the food intake and alcoholism. NI is characterized by using the neuropeptide relaxin-3 (RLN3) as transmitter and its receptor RXFP3. In the present review, we will analyze the participation of the NI-RLN3-RXFP3 system in these behaviors under conditions of anxiety or stress in animal models. The activation of NI has a positive effect on intake (orexigenic) and generates a wide response in the amygdala modulating anxiety states. The activity of RLN3-RXFP3 in the amygdala could affect alcohol addiction since the application of the RXFP3 antagonist in extended amygdala attenuates the relapse to alcohol induced by stress. The neuroanatomical data indicate that the NI-RLN3-RXFP3 system acts on the feeding behavior and alcohol intake by means of projections parallel to the canonical mesolimbic pathways. Thus, data in animal models indicate that the NI-RLN3-RXFP3 system should be taken into account as a target in the future treatment of disorders of eating and alcohol addictive behaviors


Assuntos
Humanos , Relaxina/uso terapêutico , Alcoolismo/terapia , Neuropeptídeos/uso terapêutico , Neurobiologia/métodos , Anorexia , Comportamento Aditivo , Comportamento Alimentar/psicologia , Estresse Psicológico
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