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dc.contributor.authorGarcía-Huerta, Paula
dc.contributor.authorTroncoso-Escudero, Paulina Oñate, Maritza [Ctr Integrat Biol, Fac Sci, Universidad Mayor, Chile]
dc.contributor.authorWu, Di
dc.contributor.authorThiruvalluvan, Arun
dc.contributor.authorCisternas-Olmedo, Marisol [Ctr Integrat Biol, Fac Sci, Universidad Mayor, Chile]
dc.contributor.authorHenríquez, Daniel R.
dc.contributor.authorPlate, Lars
dc.contributor.authorChana-Cuevas, Pedro
dc.contributor.authorSaquel, Cristian [Ctr Integrat Biol, Fac Sci, Universidad Mayor, Chile]
dc.contributor.authorThielen, Peter
dc.contributor.authorLongo, Kenneth A.
dc.contributor.authorGeddes, Brad J.Lederkremer, Gerardo Z.; Sharma, Neeraj; Shenkman, Marina; Naphade, Swati; Sardi, S. Pablo; Spichiger, Carlos; Richter, Hans G.; Court, Felipe A.; Tshilenge, Kizito Tshitoko; Ellerby, Lisa M.; Wiseman, R. Luke; Gonzalez-Billault, Christian; Bergink, Steven; Vidal, Rene L.; Hetz, Claudio
dc.date.accessioned2021-02-03T16:46:48Z
dc.date.available2021-02-03T16:46:48Z
dc.date.issued2020-11
dc.identifier.citationGarcía-Huerta, P., Troncoso-Escudero, P., Wu, D., Thiruvalluvan, A., Cisternas-Olmedo, M., Henríquez, D. R., ... & Hetz, C. (2020). Insulin-like growth factor 2 (IGF2) protects against Huntington’s disease through the extracellular disposal of protein aggregates. Acta neuropathologica, 140(5), 737-764.es
dc.identifier.issn0001-6322
dc.identifier.issneISSN: 1432-0533
dc.identifier.urihttp://repositorio.umayor.cl/xmlui/handle/sibum/7331
dc.identifier.urihttps://doi.org/10.1007/s00401-020-02183-1
dc.identifier.urihttps://pubmed.ncbi.nlm.nih.gov/32642868/
dc.identifier.urihttps://link.springer.com/article/10.1007/s00401-020-02183-1
dc.identifier.urihttp://repositorio.uchile.cl/handle/2250/177315
dc.description.abstractImpaired neuronal proteostasis is a salient feature of many neurodegenerative diseases, highlighting alterations in the function of the endoplasmic reticulum (ER). We previously reported that targeting the transcription factor XBP1, a key mediator of the ER stress response, delays disease progression and reduces protein aggregation in various models of neurodegeneration. To identify disease modifier genes that may explain the neuroprotective effects of XBP1 deficiency, we performed gene expression profiling of brain cortex and striatum of these animals and uncovered insulin-like growth factor 2 (Igf2) as the major upregulated gene. Here, we studied the impact of IGF2 signaling on protein aggregation in models of Huntington's disease (HD) as proof of concept. Cell culture studies revealed that IGF2 treatment decreases the load of intracellular aggregates of mutant huntingtin and a polyglutamine peptide. These results were validated using induced pluripotent stem cells (iPSC)-derived medium spiny neurons from HD patients and spinocerebellar ataxia cases. The reduction in the levels of mutant huntingtin was associated with a decrease in the half-life of the intracellular protein. The decrease in the levels of abnormal protein aggregation triggered by IGF2 was independent of the activity of autophagy and the proteasome pathways, the two main routes for mutant huntingtin clearance. Conversely, IGF2 signaling enhanced the secretion of soluble mutant huntingtin species through exosomes and microvesicles involving changes in actin dynamics. Administration of IGF2 into the brain of HD mice using gene therapy led to a significant decrease in the levels of mutant huntingtin in three different animal models. Moreover, analysis of human postmortem brain tissue and blood samples from HD patients showed a reduction in IGF2 level. This study identifies IGF2 as a relevant factor deregulated in HD, operating as a disease modifier that buffers the accumulation of abnormal protein species.es
dc.description.sponsorshipThis work was directly funded by ANID/FONDAP program 15150012 (C.H. and R.L.V.), Millennium Institute P09-015-F (C.H. and R.L.V.), CONICYT-Brazil 441921/2016-7, FONDEF ID16I10223, FONDEF D11E1007 and FONDECYT 1180186 (C.H.). We also thank FONDECYT 3150097 (P.G-H.), FONDECYT 1191003 (R.L.V.), FONDECYT 1150069 (H.G.R.), CONICYT Ph.D. fellowship 21160843 (P.T-E.), CSC and the Postgraduate Student Research and Innovation Project of Jiangsu Province KYLX15_0558 (D.W.), the Hersenstichting and NWO-ALW (S.B.), NIH R01 NS100529 (L.M.E.) and NIH NS092829 (R.L.W.). ISF Legacy Heritage Fund (2394/17) (G.Z.L.)es
dc.format.extent28 p., PDFes
dc.language.isoen_USes
dc.publisherSPRINGERes
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chilees
dc.sourceActa neuropathologica, 140(5), 737-764.
dc.subjectYAC128 MOUSE MODELes
dc.subjectSTRESS-INDEPENDENT ACTIVATIONes
dc.subjectMUTANT HUNTINGTINes
dc.subjectER STRESSes
dc.subjectENDOPLASMIC-RETICULUMes
dc.subjectFACTOR-II/MANNOSE-6-PHOSPHATE RECEPTORes
dc.subjectGENE-EXPRESSIONes
dc.titleInsulin-like growth factor 2 (IGF2) protects against Huntington's disease through the extracellular disposal of protein aggregateses
dc.typeArtículo o Paperes
umayor.facultadHUMANIDADES
umayor.indizadorCOTes
umayor.politicas.sherpa/romeoLicence CC BY. Disponible en: https://v2.sherpa.ac.uk/id/publication/7403es
umayor.indexadoWeb of Sciencees
umayor.indexadoScopuses
umayor.indexadoWOS:000546557000001
umayor.indexadoPMID: 32642868
dc.identifier.doi10.1007/s00401-020-02183-1
umayor.indicadores.wos-(cuartil)Q1
umayor.indicadores.scopus-(scimago-sjr)SJR 8.16
umayor.indicadores.scopus-(scimago-sjr)SCIMAGO/ INDICE H: 158 H


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