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1.
PLoS One ; 15(3): e0229953, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32168507

RESUMO

Epilepsy is a complex neurological disorder characterized by sudden and recurrent seizures, which are caused by various factors, including genetic abnormalities. Several animal models of epilepsy mimic the different symptoms of this disorder. In particular, the genetic audiogenic seizure hamster from Salamanca (GASH/Sal) animals exhibit sound-induced seizures similar to the generalized tonic seizures observed in epileptic patients. However, the genetic alterations underlying the audiogenic seizure susceptibility of the GASH/Sal model remain unknown. In addition, gene variations in the GASH/Sal might have a close resemblance with those described in humans with epilepsy, which is a prerequisite for any new preclinical studies that target genetic abnormalities. Here, we performed whole exome sequencing (WES) in GASH/Sal animals and their corresponding controls to identify and characterize the mutational landscape of the GASH/Sal strain. After filtering the results, moderate- and high-impact variants were validated by Sanger sequencing, assessing the possible impact of the mutations by "in silico" reconstruction of the encoded proteins and analyzing their corresponding biological pathways. Lastly, we quantified gene expression levels by RT-qPCR. In the GASH/Sal model, WES showed the presence of 342 variations, in which 21 were classified as high-impact mutations. After a full bioinformatics analysis to highlight the high quality and reliable variants, the presence of 3 high-impact and 15 moderate-impact variants were identified. Gene expression analysis of the high-impact variants of Asb14 (ankyrin repeat and SOCS Box Containing 14), Msh3 (MutS Homolog 3) and Arhgef38 (Rho Guanine Nucleotide Exchange Factor 38) genes showed a higher expression in the GASH/Sal than in control hamsters. In silico analysis of the functional consequences indicated that those mutations in the three encoded proteins would have severe functional alterations. By functional analysis of the variants, we detected 44 significantly enriched pathways, including the glutamatergic synapse pathway. The data show three high-impact mutations with a major impact on the function of the proteins encoded by these genes, although no mutation in these three genes has been associated with some type of epilepsy until now. Furthermore, GASH/Sal animals also showed gene variants associated with different types of epilepsy that has been extensively documented, as well as mutations in other genes that encode proteins with functions related to neuronal excitability, which could be implied in the phenotype of the GASH/Sal. Our findings provide valuable genetic and biological pathway data associated to the genetic burden of the audiogenic seizure susceptibility and reinforce the need to validate the role of each key mutation in the phenotype of the GASH/Sal model.


Assuntos
Biologia Computacional , Epilepsia Reflexa/epidemiologia , Epilepsia/epidemiologia , Convulsões/epidemiologia , Estimulação Acústica , Animais , Cricetinae , Modelos Animais de Doenças , Epilepsia/tratamento farmacológico , Epilepsia/genética , Epilepsia/patologia , Epilepsia Reflexa/tratamento farmacológico , Epilepsia Reflexa/genética , Epilepsia Reflexa/patologia , Feminino , Regulação da Expressão Gênica/genética , Fatores de Troca do Nucleotídeo Guanina/genética , Humanos , Masculino , Proteína 3 Homóloga a MutS/genética , Mutação/genética , Convulsões/tratamento farmacológico , Convulsões/genética , Convulsões/patologia , Sequenciamento do Exoma
2.
Brain Struct Funct ; 222(8): 3491-3508, 2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28382577

RESUMO

The noradrenergic locus coeruleus (LC) plays an important role in the promotion and maintenance of arousal and alertness. Our group recently described coerulean projections to cochlear root neurons (CRNs), the first relay of the primary acoustic startle reflex (ASR) circuit. However, the role of the LC in the ASR and its modulation, prepulse inhibition (PPI), is not clear. In this study, we damaged LC neurons and fibers using a highly selective neurotoxin, DSP-4, and then assessed ASR and PPI in male and female rats. Our results showed that ASR amplitude was higher in males at 14 days after DSP-4 injection when compared to pre-administration values and those in the male control group. Such modifications in ASR amplitude did not occur in DSP-4-injected females, which exhibited ASR amplitude within the range of control values. PPI differences between males and females seen in controls were not observed in DSP-4-injected rats for any interstimulus interval tested. DSP-4 injection did not affect ASR and PPI latencies in either the male or the female groups, showing values that were consistent with the sex-related variability observed in control rats. Furthermore, we studied the noradrenergic receptor system in the cochlear nerve root using gene expression analysis. When compared to controls, DSP-4-injected males showed higher levels of expression in all adrenoceptor subtypes; however, DSP-4-injected females showed varied effects depending on the receptor type, with either up-, downregulations, or maintenance of expression levels. Lastly, we determined noradrenaline levels in CRNs and other LC-targeted areas using HPLC assays, and these results correlated with behavioral and adrenoceptor expression changes post DSP-4 injection. Our study supports the participation of LC in ASR and PPI, and contributes toward a better understanding of sex-related differences observed in somatosensory gating paradigms.


Assuntos
Núcleo Coclear/fisiologia , Locus Cerúleo/fisiologia , Neurônios/fisiologia , Inibição Pré-Pulso/fisiologia , Reflexo de Sobressalto , Caracteres Sexuais , Estimulação Acústica , Animais , Núcleo Coclear/citologia , Núcleo Coclear/metabolismo , Dopamina beta-Hidroxilase/metabolismo , Feminino , Locus Cerúleo/citologia , Locus Cerúleo/metabolismo , Masculino , Vias Neurais/fisiologia , Neurônios/citologia , Neurônios/metabolismo , Norepinefrina/metabolismo , Ratos Wistar , Receptores Adrenérgicos/metabolismo
3.
Brain Struct Funct ; 219(5): 1555-73, 2014 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-23733175

RESUMO

Cochlear root neurons (CRNs) are the first brainstem neurons which initiate and participate in the full expression of the acoustic startle reflex. Although it has been suggested that a cholinergic pathway from the ventral nucleus of the trapezoid body (VNTB) conveys auditory prepulses to the CRNs, the neuronal origin of the VNTB-CRNs projection and the role it may play in the cochlear root nucleus remain uncertain. To determine the VNTB neuronal type which projects to CRNs, we performed tract-tracing experiments combined with mechanical lesions, and morphometric analyses. Our results indicate that a subpopulation of non-olivocochlear neurons projects directly and bilaterally to CRNs via the trapezoid body. We also performed a gene expression analysis of muscarinic and nicotinic receptors which indicates that CRNs contain a cholinergic receptor profile sufficient to mediate the modulation of CRN responses. Consequently, we investigated the effects of auditory prepulses on the neuronal activity of CRNs using extracellular recordings in vivo. Our results show that CRN responses are strongly inhibited by auditory prepulses. Unlike other neurons of the cochlear nucleus, the CRNs exhibited inhibition that depended on parameters of the auditory prepulse such as intensity and interstimulus interval, showing their strongest inhibition at short interstimulus intervals. In sum, our study supports the idea that CRNs are involved in the auditory prepulse inhibition of the acoustic startle reflex, and confirms the existence of multiple cholinergic pathways that modulate the primary acoustic startle circuit.


Assuntos
Vias Auditivas/fisiologia , Colinérgicos/farmacologia , Neurônios Colinérgicos/efeitos dos fármacos , Núcleo Coclear/citologia , Reflexo de Sobressalto/efeitos dos fármacos , Corpo Trapezoide/citologia , Estimulação Acústica , Potenciais de Ação/efeitos dos fármacos , Animais , Vias Auditivas/citologia , Biotina/análogos & derivados , Biotina/metabolismo , Proteínas de Ligação ao Cálcio/metabolismo , Neurônios Colinérgicos/fisiologia , Dextranos/metabolismo , Feminino , Lateralidade Funcional , Expressão Gênica/efeitos dos fármacos , Colículos Inferiores/fisiologia , RNA Mensageiro/metabolismo , Ratos , Ratos Sprague-Dawley , Receptores Muscarínicos/genética , Receptores Muscarínicos/metabolismo , Receptores Nicotínicos/genética , Receptores Nicotínicos/metabolismo , Reflexo de Sobressalto/fisiologia
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