Elimination of protein aggregates prevents premature senescence in human trisomy 21 fibroblasts

dc.contributor.authorNawa, Nobutoshi
dc.contributor.authorHirata, Katsuya
dc.contributor.authorKawatani, Keiji
dc.contributor.authorNambara, Toshihiko
dc.contributor.authorOmori, Sayaka
dc.contributor.authorBanno, Kimihiko
dc.contributor.authorKokubu, Chikara
dc.contributor.authorTakeda, Junji
dc.contributor.authorNishimura, Ken
dc.contributor.authorOhtaka, Manami
dc.contributor.authorNakanishi, Mahito
dc.contributor.authorOkuzaki, Daisuke
dc.contributor.authorTaniguchi, Hidetoshi
dc.contributor.authorArahori, Hitomi
dc.contributor.authorWada, Kazuko
dc.contributor.authorKitabatake, Yasuji
dc.contributor.authorOzono, Keiichi
dc.contributor.departmentPediatrics, School of Medicineen_US
dc.date.accessioned2019-10-14T21:17:05Z
dc.date.available2019-10-14T21:17:05Z
dc.date.issued2019
dc.description.abstractChromosome abnormalities induces profound alterations in gene expression, leading to various disease phenotypes. Recent studies on yeast and mammalian cells have demonstrated that aneuploidy exerts detrimental effects on organismal growth and development, regardless of the karyotype, suggesting that aneuploidy-associated stress plays an important role in disease pathogenesis. However, whether and how this effect alters cellular homeostasis and long-term features of human disease are not fully understood. Here, we aimed to investigate cellular stress responses in human trisomy syndromes, using fibroblasts and induced pluripotent stem cells (iPSCs). Dermal fibroblasts derived from patients with trisomy 21, 18 and 13 showed a severe impairment of cell proliferation and enhanced premature senescence. These phenomena were accompanied by perturbation of protein homeostasis, leading to the accumulation of protein aggregates. We found that treatment with sodium 4-phenylbutyrate (4-PBA), a chemical chaperone, decreased the protein aggregates in trisomy fibroblasts. Notably, 4-PBA treatment successfully prevented the progression of premature senescence in secondary fibroblasts derived from trisomy 21 iPSCs. Our study reveals aneuploidy-associated stress as a potential therapeutic target for human trisomies, including Down syndrome.en_US
dc.identifier.citationNawa, N., Hirata, K., Kawatani, K., Nambara, T., Omori, S., Banno, K., … Ozono, K. (2019). Elimination of protein aggregates prevents premature senescence in human trisomy 21 fibroblasts. PloS one, 14(7), e0219592. doi:10.1371/journal.pone.0219592en_US
dc.identifier.urihttps://hdl.handle.net/1805/21168
dc.language.isoen_USen_US
dc.publisherPLOSen_US
dc.relation.isversionof10.1371/journal.pone.0219592en_US
dc.relation.journalPloS Oneen_US
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/us/*
dc.sourcePMCen_US
dc.subjectChromosome abnormalitiesen_US
dc.subjectAneuploidyen_US
dc.subjectAneuploidy-associated stressen_US
dc.subjectCellular homeostasisen_US
dc.titleElimination of protein aggregates prevents premature senescence in human trisomy 21 fibroblastsen_US
dc.typeArticleen_US
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