Proteomic and Bioinformatic Tools to Identify Potential Hub Proteins in the Audiogenic Seizure-Prone Hamster GASH/Sal

Author:

García-Peral Carlos12ORCID,Ledesma Martín M.34ORCID,Herrero-Turrión M. Javier15ORCID,Gómez-Nieto Ricardo126ORCID,Castellano Orlando126ORCID,López Dolores E.126ORCID

Affiliation:

1. Instituto de Neurociencias de Castilla y León (INCYL), Universidad de Salamanca, 37007 Salamanca, Spain

2. Instituto de Investigación Biomédica de Salamanca (IBSAL), 37007 Salamanca, Spain

3. Unidad de Conocimiento Traslacional, Hospital de Alta Complejidad del Bicentenario Esteban Echeverría, Monte Grande B1842, Argentina

4. Instituto de Fisiopatología y Bioquímica Clínica (INFIBIOC), Hospital de Clínicas “José de San Martín”, Facultad de Farmacia y Bioquímica, UBA, Buenos Aires C1053, Argentina

5. Banco de Tejidos Neurológicos del INCYL (BTN-INCYL), 37007 Salamanca, Spain

6. Department de Biología Celular y Patología, Facultad de Medicina, Universidad de Salamanca, 37007 Salamanca, Spain

Abstract

The GASH/Sal (Genetic Audiogenic Seizure Hamster, Salamanca) is a model of audiogenic seizures with the epileptogenic focus localized in the inferior colliculus (IC). The sound-induced seizures exhibit a short latency (7–9 s), which implies innate protein disturbances in the IC as a basis for seizure susceptibility and generation. Here, we aim to study the protein profile in the GASH/Sal IC in comparison to controls. Protein samples from the IC were processed for enzymatic digestion and then analyzed by mass spectrometry in Data-Independent Acquisition mode. After identifying the proteins using the UniProt database, we selected those with differential expression and performed ontological analyses, as well as gene-protein interaction studies using bioinformatics tools. We identified 5254 proteins; among them, 184 were differentially expressed proteins (DEPs), with 126 upregulated and 58 downregulated proteins, and 10 of the DEPs directly related to epilepsy. Moreover, 12 and 7 proteins were uniquely found in the GASH/Sal or the control. The results indicated a protein profile alteration in the epileptogenic nucleus that might underlie the inborn occurring audiogenic seizures in the GASH/Sal model. In summary, this study supports the use of bioinformatics methods in proteomics to delve into the relationship between molecular-level protein mechanisms and the pathobiology of rodent models of audiogenic seizures.

Funder

Instituto de Salud Carlos III

Junta de Castilla y León

Publisher

MDPI AG

Subject

Clinical Biochemistry

Reference127 articles.

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