Please use this identifier to cite or link to this item: https://scholarbank.nus.edu.sg/handle/10635/102493
Title: Molecular framework underlying pluripotency
Authors: Loh, Y.-H.
Ng, J.-H.
Ng, H.-H. 
Keywords: Embryonic stem cell
Epigenetic
Histone demethylase
Pluripotency
Regulatory network
Reprogramming
Trans-differentiation
Issue Date: 1-Apr-2008
Citation: Loh, Y.-H.,Ng, J.-H.,Ng, H.-H. (2008-04-01). Molecular framework underlying pluripotency. Cell Cycle 7 (7) : 885-891. ScholarBank@NUS Repository.
Abstract: Pluripotency is governed by the intricate interplay between genetic and epigenetic factors. Previous studies implicate Oct4, Sox2 and Nanog as core regulators of the transcriptional circuitry in pluripotent cells. The three transcription factors and their downstream target genes coordinately promote self-renewal and pluripotency. Significant inroads have also been made into elucidating the epigenetic mechanisms governing the exit from a self-renewal state. The recent success in reprogramming both mouse and human fibroblast cells into a pluripotent state has marked a new era in stem cell research and is pertinent to a comprehensive understanding of pluripotency. Reprogramming can be initiated by the introduction of few defined factors. However, the molecular mechanisms driving reprogramming remain largely obscure and await further investigations. Here, we explore the molecular framework governing pluripotency in the context of pluripotent ES cells and the reprogrammed iPS cells. ©2008 Landes Bioscience.
Source Title: Cell Cycle
URI: http://scholarbank.nus.edu.sg/handle/10635/102493
ISSN: 15384101
Appears in Collections:Staff Publications

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