Highly Coordinated Proteome Dynamics during Reprogramming of Somatic Cells to Pluripotency

Jenny Hansson(European Molecular Biology Laboratory), Mahmoud Reza Rafiee(European Molecular Biology Laboratory), Sonja Reiland(European Molecular Biology Laboratory), José M. Polo(Massachusetts General Hospital), Julian Gehring(European Molecular Biology Laboratory), Satoshi Okawa(European Molecular Biology Laboratory), Wolfgang Huber(European Molecular Biology Laboratory), Konrad Hochedlinger(Massachusetts General Hospital), Jeroen Krijgsveld(European Molecular Biology Laboratory)
Cell Reports
December 1, 2012
Cited by 251Open Access
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Abstract

Generation of induced pluripotent stem cells (iPSCs) is a process whose mechanistic underpinnings are only beginning to emerge. Here, we applied in-depth quantitative proteomics to monitor proteome changes during the course of reprogramming of fibroblasts to iPSCs. We uncover a two-step resetting of the proteome during the first and last 3 days of reprogramming, with multiple functionally related proteins changing in expression in a highly coordinated fashion. This comprised several biological processes, including changes in the stoichiometry of electron transport-chain complexes, repressed vesicle-mediated transport during the intermediate stage, and an EMT-like process in the late phase. In addition, we demonstrate that the nucleoporin Nup210 is essential for reprogramming by its permitting of rapid cellular proliferation and subsequent progression through MET. Along with the identification of proteins expressed in a stage-specific manner, this study provides a rich resource toward an enhanced mechanistic understanding of cellular reprogramming.


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