Quantitative proteomic analysis of induced pluripotent stem cells derived from a human Huntington's disease patient

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dc.contributor.authorJ I Chae-
dc.contributor.authorD W Kim-
dc.contributor.authorN Lee-
dc.contributor.authorYoung Joo Jeon-
dc.contributor.authorI Jeon-
dc.contributor.authorJ Kwon-
dc.contributor.authorJ Kim-
dc.contributor.authorY Soh-
dc.contributor.authorD S Lee-
dc.contributor.authorK S Seo-
dc.contributor.authorN J Choi-
dc.contributor.authorByoung Chul Park-
dc.contributor.authorSunghyun Kang-
dc.contributor.authorJ Ryu-
dc.contributor.authorS H Oh-
dc.contributor.authorD A Shin-
dc.contributor.authorD R Lee-
dc.contributor.authorJ T Do-
dc.contributor.authorI H Park-
dc.contributor.authorG Q Daley-
dc.contributor.authorJ Song-
dc.date.accessioned2017-04-19T09:33:27Z-
dc.date.available2017-04-19T09:33:27Z-
dc.date.issued2012-
dc.identifier.issn0264-6021-
dc.identifier.uri10.1042/BJ20111495ko
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/10906-
dc.description.abstractHD (Huntington's disease) is a devastating neurodegenerative genetic disorder caused by abnormal expansion of CAG repeats in the HTT (huntingtin) gene.We have recently established two iPSC (induced pluripotent stem cell) lines derived from a HD patient carrying 72 CAG repeats (HD-iPSC). In order to understand the proteomic profiles of HD-iPSCs, we have performed comparative proteomic analysis among normal hESCs (human embryonic stem cells; H9), iPSCs (551-8) and HD-iPSCs at undifferentiated stages, and identified 26 up- and down-regulated proteins. Interestingly, these differentially expressed proteins are known to be involved in different biological processes, such as oxidative stress, programmed cell death and cellular oxygenassociated proteins. Among them, we found that oxidative stressrelated proteins, such as SOD1 (superoxide dismutase 1) and Prx (peroxiredoxin) families are particularly affected in HD-iPSCs, implying that HD-iPSCs are highly susceptible to oxidative stress. We also found that BTF3 (basic transcription factor 3) is upregulated in HD-iPSCs, which leads to the induction of ATM (ataxia telangiectasia mutated), followed by activation of the p53- mediated apoptotic pathway. In addition, we observed that the expression of cytoskeleton-associated proteins was significantly reduced in HD-iPSCs, implying that neuronal differentiation was also affected. Taken together, these results demonstrate that HDiPSCs can provide a unique cellular disease model system to understand the pathogenesis and neurodegeneration mechanisms in HD, and the identified proteins from the present study may serve as potential targets for developing future HD therapeutics.-
dc.publisherPortland Press Ltd-
dc.titleQuantitative proteomic analysis of induced pluripotent stem cells derived from a human Huntington's disease patient-
dc.title.alternativeQuantitative proteomic analysis of induced pluripotent stem cells derived from a human Huntington's disease patient-
dc.typeArticle-
dc.citation.titleBiochemical Journal-
dc.citation.number3-
dc.citation.endPage371-
dc.citation.startPage359-
dc.citation.volume446-
dc.contributor.affiliatedAuthorYoung Joo Jeon-
dc.contributor.affiliatedAuthorByoung Chul Park-
dc.contributor.affiliatedAuthorSunghyun Kang-
dc.contributor.alternativeName채정일-
dc.contributor.alternativeName김동욱-
dc.contributor.alternativeName이나연-
dc.contributor.alternativeName전영주-
dc.contributor.alternativeName전익수-
dc.contributor.alternativeName권지혜-
dc.contributor.alternativeName김주미-
dc.contributor.alternativeName소윤조-
dc.contributor.alternativeName이동석-
dc.contributor.alternativeName서강석-
dc.contributor.alternativeName최낙진-
dc.contributor.alternativeName박병철-
dc.contributor.alternativeName강성현-
dc.contributor.alternativeName유주현-
dc.contributor.alternativeName오승훈-
dc.contributor.alternativeName신동아-
dc.contributor.alternativeName이동렬-
dc.contributor.alternativeName도정태-
dc.contributor.alternativeName박인현-
dc.contributor.alternativeNameDaley-
dc.contributor.alternativeName송지환-
dc.identifier.bibliographicCitationBiochemical Journal, vol. 446, no. 3, pp. 359-371-
dc.identifier.doi10.1042/BJ20111495-
dc.subject.keywordApoptosis-
dc.subject.keywordCytoskeleton-associated proteins-
dc.subject.keywordHuntington's disease-
dc.subject.keywordInduced pluripotent stem cell (iPSC)-
dc.subject.keywordOxidative stress-
dc.subject.keywordProteomic analysis-
dc.subject.localApoptosis-
dc.subject.localapoptosis-
dc.subject.localCytoskeleton-associated proteins-
dc.subject.localHuntington's disease-
dc.subject.localInduced pluripotent stem cell-
dc.subject.localInduced pluripotent stem cell (iPSC)-
dc.subject.localInduced pluripotent stem cells-
dc.subject.localiPSCs-
dc.subject.localinduced pluripotent stem cell-
dc.subject.localinduced pluripotent stem cells (iPSCs)-
dc.subject.localiPSC-
dc.subject.localinduced pluripotent stem cell(iPSC)-
dc.subject.localInduced Pluripotent stem cell-
dc.subject.localOXIDATIVE STRESS-
dc.subject.localOxidative Stress-
dc.subject.localOxidative stre-
dc.subject.localOxidative stress-
dc.subject.localoxidative stress-
dc.subject.localProteomic analyses-
dc.subject.localProteomic analysis-
dc.subject.localproteomic analysis-
dc.description.journalClassY-
Appears in Collections:
Division of A.I. & Biomedical Research > Metabolic Regulation Research Center > 1. Journal Articles
Critical Diseases Diagnostics Convergence Research Center > 1. Journal Articles
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