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dc.contributor.authorSánchez-Sarasúa, Sandra
dc.contributor.authorMeseguer Beltrán, Maria
dc.contributor.authorGarcía Díaz, Cristina
dc.contributor.authorBeltrán-Bretones, Maria Teresa
dc.contributor.authorElMlili, Nisrin
dc.contributor.authorSánchez-Pérez, Ana María
dc.date.accessioned2022-01-10T08:57:45Z
dc.date.available2022-01-10T08:57:45Z
dc.date.issued2022-01
dc.identifier.citationSánchez-Sarasúa S, Meseguer-Beltrán M, García-Díaz C, Beltrán-Bretones MT, ElMlili N, Sánchez-Pérez AM. IRS1 expression in hippocampus is age-dependent and is required for mature spine maintenance and neuritogenesis. Mol Cell Neurosci. 2021 Dec 20;118:103693. doi: 10.1016/j.mcn.2021.103693ca_CA
dc.identifier.issn1044-7431
dc.identifier.urihttp://hdl.handle.net/10234/196386
dc.description.abstractInsulin 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.ca_CA
dc.format.extent8 p.ca_CA
dc.format.mimetypeapplication/pdfca_CA
dc.language.isoengca_CA
dc.publisherElsevierca_CA
dc.relation.isPartOfMolecular and Cellular Neuroscience, 2022, vol. 118ca_CA
dc.rightsCopyright © Elsevier B.V.ca_CA
dc.rights.urihttp://rightsstatements.org/vocab/CNE/1.0/ca_CA
dc.subjectshRNAca_CA
dc.subjectneurite branchingca_CA
dc.subjectspine morphologyca_CA
dc.subjectsholl analysisca_CA
dc.subjectIGF-1ca_CA
dc.subjectinsulinca_CA
dc.subjectIRS expressionca_CA
dc.subjecthippocampusca_CA
dc.subjectprefrontal cortexca_CA
dc.titleIRS1 expression in hippocampus is age-dependent and is required for mature spine maintenance and neuritogenesisca_CA
dc.typeinfo:eu-repo/semantics/articleca_CA
dc.identifier.doihttps://doi.org/10.1016/j.mcn.2021.103693
dc.rights.accessRightsinfo:eu-repo/semantics/openAccessca_CA
dc.relation.publisherVersionhttps://www.sciencedirect.com/science/article/pii/S1044743121001068?via%3Dihubca_CA
dc.type.versioninfo:eu-repo/semantics/acceptedVersionca_CA
project.funder.nameUniversitat Jaume Ica_CA
project.funder.nameConselleria de Educació, Cultura i Sportca_CA
project.funder.nameConselleria d'Innovació, Universitats, Ciència i Societat Digitalca_CA
oaire.awardNumberUJI-B2018-01ca_CA
oaire.awardNumberAICO/2015/042ca_CA
oaire.awardNumberACIF/2016/250ca_CA


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