Neuroprotective effect of rLosac on supplement-deprived mouse cultured cortical neurons involves maintenance of monocarboxylate transporter MCT2 protein levels

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Campo DCValoridioma
dc.contributor(LDI) Lab. Desenvolvimento e Inovação Industrialpt_BR
dc.contributor.authorAlvarez Flores, Miryam Paolapt_BR
dc.contributor.authorHébert, Audreypt_BR
dc.contributor.authorGouelle, Cathypt_BR
dc.contributor.authorGeller, Sarahpt_BR
dc.contributor.authorChudzinski-Tavassi, Ana Marisapt_BR
dc.contributor.authorPellerin, Lucpt_BR
dc.date.accessioned2020-07-09T21:22:43Z-
dc.date.available2020-07-09T21:22:43Z-
dc.date.issued2019pt_BR
dc.identifier.citationAlvarez Flores MP, Hébert A, Gouelle C, Geller S, Chudzinski-Tavassi AM, Pellerin L. Neuroprotective effect of rLosac on supplement-deprived mouse cultured cortical neurons involves maintenance of monocarboxylate transporter MCT2 protein levels. J Neurochem. 2019;148(1):80-96. doi:10.1111/jnc.14617.pt_BR
dc.identifier.urihttps://repositorio.butantan.gov.br/handle/butantan/2662-
dc.description.abstractThe recombinant Lonomia obliqua Stuart-factor activator (rLosac) is a recombinant hemolin which belongs to the immunoglobulin superfamily of cell adhesion molecules. It is capable of inducing pro-survival activity in serum-deprived human umbilical vein endothelial cells (HUVECs) and fibroblasts by increasing mitochondrial metabolism. We hypothesize that it could promote neuronal survival by acting on neuroenergetics. Our study reveals that treatment of primary mouse cortical neurons cultured in neurobasal medium lacking B27 supplement with rLosac led to an enhancement of cell viability in a time- and concentration-dependent manner. In parallel, preserved or enhanced phosphorylation of Akt, p44, and p42 MAPK, as well as mTOR was observed following treatment with rLosac. During deprivation, as assessed by western blot and qRT-PCR, protein and mRNA expression of MCT2 (the predominant neuronal monocarboxylate transporter allowing lactate use as an alternative energy substrate) decreased significantly in B27 supplement-deprived cortical neurons and was hardly detected after 24h of deprivation. Interestingly, rLosac maintained MCT2 protein expression after 24h of deprivation including at the cell surface without preventing mRNA loss. MCT2 knockdown reduced rLosac-enhanced cell viability, confirming its involvement in rLosac effect. Enhanced uptake of lactate was detected following rLosac treatment and might contribute to rLosac-enhanced viability during deprivation. In the presence of both lactate and rLosac, cell viability was higher than in the presence of lactate alone. Our observations suggest that rLosac promotes cell viability in stressed (B27 supplement-deprived) neurons by facilitating the use of lactate as energy substrate via the preservation of MCT2 protein expression.pt_BR
dc.description.sponsorshipUniversité de Bordeauxpt_BR
dc.description.sponsorship(CAPES) Coordenação de Aperfeiçoamento de Pessoal de Nível Superiorpt_BR
dc.description.sponsorship(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulopt_BR
dc.description.sponsorship(CNPq) Conselho Nacional de Desenvolvimento Científico e Tecnológicopt_BR
dc.format.extentp. 80-96pt_BR
dc.language.isoEnglishpt_BR
dc.relation.ispartofJournal of Neurochemistrypt_BR
dc.rightsRestricted accesspt_BR
dc.titleNeuroprotective effect of rLosac on supplement-deprived mouse cultured cortical neurons involves maintenance of monocarboxylate transporter MCT2 protein levelspt_BR
dc.typeArticlept_BR
dc.identifier.doi10.1111/jnc.14617pt_BR
dc.identifier.urlhttp://dx.doi.org/10.1111/jnc.14617pt_BR
dc.contributor.external(UNIL) Université de Lausannept_BR
dc.contributor.externalUniversité de Bordeauxpt_BR
dc.identifier.citationvolume148pt_BR
dc.identifier.citationissue1pt_BR
dc.subject.keywordenergypt_BR
dc.subject.keywordhemolinpt_BR
dc.subject.keywordlactatept_BR
dc.subject.keywordMCT2pt_BR
dc.subject.keywordneuroprotectionpt_BR
dc.subject.keywordrLosacpt_BR
dc.relation.ispartofabbreviatedJ Neurochempt_BR
dc.identifier.citationabntv. 148, n. 1, p. 80-96, 2019pt_BR
dc.identifier.citationvancouver2019;148(1):80-96pt_BR
dc.contributor.butantanAlvarez Flores, Miryam Paola|:Colaborador|:Lab. Biologia Molecular|:PrimeiroAutorpt_BR
dc.contributor.butantanChudzinski-Tavassi, Ana Marisa|:Pesquisador:Docente Permanente PPGTOX|:Lab. Biologia Molecular|:pt_BR
dc.sponsorship.butantan(CNPq) Conselho Nacional de Desenvolvimento Científico e Tecnológico¦¦303197/2017-0pt_BR
dc.sponsorship.butantan(CAPES) Coordenação de Aperfeiçoamento de Pessoal de Nível Superior¦¦2579-13-8pt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2013/07467-1pt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2013/07467-1pt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2015/50040-4pt_BR
dc.sponsorship.butantanUniversité de Bordeaux¦¦ANR-10-IDEX-03-02pt_BR
dc.identifier.bvsccBR78.1pt_BR
dc.identifier.bvsdbIBProdpt_BR
dc.description.dbindexedYespt_BR
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