Literature DB >> 22375802

Quantitative proteomic analysis of mouse embryonic fibroblasts and induced pluripotent stem cells using 16O/18O labeling.

Xin Huang1, Changhai Tian, Miao Liu, Yongxiang Wang, Aleksey V Tolmachev, Seema Sharma, Fang Yu, Kai Fu, Jialin Zheng, Shi-Jian Ding.   

Abstract

Induced pluripotent stem cells (iPSC) hold great promise for regenerative medicine as well as for investigations into the pathogenesis and treatment of various diseases. Understanding of key intracellular signaling pathways and protein targets that control development of iPSC from somatic cells is essential for designing new approaches to improve reprogramming efficiency. Here, we report the development and application of an integrated quantitative proteomics platform for investigating differences in protein expressions between mouse embryonic fibroblasts (MEF) and MEF-derived iPSC. This platform consists of 16O/18O labeling, multidimensional peptide separation coupled with tandem mass spectrometry, and data analysis with UNiquant software. With this platform, a total of 2481 proteins were identified and quantified from the 16O/18O-labeled MEF-iPSC proteome mixtures with a false discovery rate of 0.01. Among them, 218 proteins were significantly upregulated, while 247 proteins were significantly downregulated in iPSC compared to MEF. Many nuclear proteins, including Hdac1, Dnmt1, Pcna, Ccnd1, Smarcc1, and subunits in DNA replication and RNA polymerase II complex, were found to be enhanced in iPSC. Protein network analysis revealed that Pcna functions as a hub orchestrating complicated mechanisms including DNA replication, epigenetic inheritance (Dnmt1), and chromatin remodeling (Smarcc1) to reprogram MEF and maintain stemness of iPSC.

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Year:  2012        PMID: 22375802     DOI: 10.1021/pr300155r

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  5 in total

1.  Proteomic analysis of early reprogramming events in murine somatic cells incubated with Xenopus laevis oocyte extracts demonstrates network associations with induced pluripotency markers.

Authors:  Alex J Rathbone; Susan Liddell; Keith H S Campbell
Journal:  Cell Reprogram       Date:  2013-06-15       Impact factor: 1.987

2.  ISPTM: an iterative search algorithm for systematic identification of post-translational modifications from complex proteome mixtures.

Authors:  Xin Huang; Lin Huang; Hong Peng; Ashu Guru; Weihua Xue; Sang Yong Hong; Miao Liu; Seema Sharma; Kai Fu; Adam P Caprez; David R Swanson; Zhixin Zhang; Shi-Jian Ding
Journal:  J Proteome Res       Date:  2013-08-06       Impact factor: 4.466

3.  Highly coordinated proteome dynamics during reprogramming of somatic cells to pluripotency.

Authors:  Jenny Hansson; Mahmoud Reza Rafiee; Sonja Reiland; Jose M Polo; Julian Gehring; Satoshi Okawa; Wolfgang Huber; Konrad Hochedlinger; Jeroen Krijgsveld
Journal:  Cell Rep       Date:  2012-12-27       Impact factor: 9.423

4.  Large Scale Chemical Cross-linking Mass Spectrometry Perspectives.

Authors:  Boris L Zybailov; Galina V Glazko; Mihir Jaiswal; Kevin D Raney
Journal:  J Proteomics Bioinform       Date:  2013-02-08

5.  Regulation of pluripotency and cellular reprogramming by the ubiquitin-proteasome system.

Authors:  Shannon M Buckley; Beatriz Aranda-Orgilles; Alexandros Strikoudis; Effie Apostolou; Evangelia Loizou; Kelly Moran-Crusio; Charles L Farnsworth; Antonius A Koller; Ramanuj Dasgupta; Jeffrey C Silva; Matthias Stadtfeld; Konrad Hochedlinger; Emily I Chen; Iannis Aifantis
Journal:  Cell Stem Cell       Date:  2012-10-25       Impact factor: 24.633

  5 in total

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