نتایج جستجو برای: pluripotency

تعداد نتایج: 5192  

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2009
Jiaxi Zhou Pei Su Lu Wang Joanna Chen Maike Zimmermann Olga Genbacev Olubunmi Afonja Mary C Horne Tetsuya Tanaka Enkui Duan Susan J Fisher Jiayu Liao Jie Chen Fei Wang

Despite the recent identification of the transcriptional regulatory circuitry involving SOX2, NANOG, and OCT-4, the intracellular signaling networks that control pluripotency of human embryonic stem cells (hESCs) remain largely undefined. Here, we demonstrate an essential role for the serine/threonine protein kinase mammalian target of rapamycin (mTOR) in regulating hESC long-term undifferentia...

Journal: :Cell reports 2013
Alissa Minkovsky Tahsin Stefan Barakat Nadia Sellami Mark Henry Chin Nilhan Gunhanlar Joost Gribnau Kathrin Plath

X chromosome inactivation (XCI) is a dynamically regulated developmental process with inactivation and reactivation accompanying the loss and gain of pluripotency, respectively. A functional relationship between pluripotency and lack of XCI has been suggested, whereby pluripotency transcription factors repress the master regulator of XCI, the noncoding transcript Xist, by binding to its first i...

2016
Anzy Miller Meryem Ralser Susan L Kloet Remco Loos Ryuichi Nishinakamura Paul Bertone Michiel Vermeulen Brian Hendrich

Sall4 is an essential transcription factor for early mammalian development and is frequently overexpressed in cancer. Although it is reported to play an important role in embryonic stem cell (ESC) self-renewal, whether it is an essential pluripotency factor has been disputed. Here, we show that Sall4 is dispensable for mouse ESC pluripotency. Sall4 is an enhancer-binding protein that prevents p...

Journal: :Cell stem cell 2014
Yu Lu Yuin-Han Loh Hu Li Marcella Cesana Scott B Ficarro Jignesh R Parikh Nathan Salomonis Cheng-Xu Delon Toh Stelios T Andreadis C John Luckey James J Collins George Q Daley Jarrod A Marto

Alternative RNA splicing (AS) regulates proteome diversity, including isoform-specific expression of several pluripotency genes. Here, we integrated global gene expression and proteomic analyses and identified a molecular signature suggesting a central role for AS in maintaining human pluripotent stem cell (hPSC) self-renewal. We demonstrate that the splicing factor SFRS2 is an OCT4 target gene...

Journal: :Nucleus 2011
Hadas Hezroni Itai Tzchori Anna Davidi Anna Mattout Alva Biran Malka Nissim-Rafinia Heiner Westphal Eran Meshorer

The pluripotent genome is characterized by unique epigenetic features and a decondensed chromatin conformation. However, the relationship between epigenetic regulation and pluripotency is not altogether clear. Here, using an enhanced MEF/ESC fusion protocol, we compared the reprogramming potency and histone modifications of different embryonic stem cell (ESC) lines (R1, J1, E14, C57BL/6) and fo...

Journal: :Cell stem cell 2015
Michael S Kareta Laura L Gorges Sana Hafeez Bérénice A Benayoun Samuele Marro Anne-Flore Zmoos Matthew J Cecchini Damek Spacek Luis F Z Batista Megan O'Brien Yi-Han Ng Cheen Euong Ang Dedeepya Vaka Steven E Artandi Frederick A Dick Anne Brunet Julien Sage Marius Wernig

Mutations in the retinoblastoma tumor suppressor gene Rb are involved in many forms of human cancer. In this study, we investigated the early consequences of inactivating Rb in the context of cellular reprogramming. We found that Rb inactivation promotes the reprogramming of differentiated cells to a pluripotent state. Unexpectedly, this effect is cell cycle independent, and instead reflects di...

2017
Pierluigi Scerbo Leslie Marchal Laurent Kodjabachian

During early embryogenesis, cells must exit pluripotency and commit to multiple lineages in all germ-layers. How this transition is operated in vivo is poorly understood. Here, we report that MEK1 and the Nanog-related transcription factor Ventx2 coordinate this transition. MEK1 was required to make Xenopus pluripotent cells competent to respond to all cell fate inducers tested. Importantly, ME...

Journal: :Genes & development 2015
Thais Lavagnolli Preksha Gupta Eva Hörmanseder Hegias Mira-Bontenbal Gopuraja Dharmalingam Thomas Carroll John B Gurdon Amanda G Fisher Matthias Merkenschlager

Cohesin is implicated in establishing and maintaining pluripotency. Whether this is because of essential cohesin functions in the cell cycle or in gene regulation is unknown. Here we tested cohesin's contribution to reprogramming in systems that reactivate the expression of pluripotency genes in the absence of proliferation (embryonic stem [ES] cell heterokaryons) or DNA replication (nuclear tr...

2013
Harry G. Leitch Austin Smith

Naive pluripotency refers to the capacity of single cells in regulative embryos to engender all somatic and germline cell types. Only germ cells – conventionally considered to be unipotent – can naturally re-acquire pluripotency, by cycling through fertilisation. Furthermore, primordial germ cells express, and appear to be functionally dependent upon, transcription factors that characterise the...

2016
Yao Xiao Maomao Gao Luna Gao Yu Zhao Qiang Hong Zhigang Li Jing Yao Hanhua Cheng Rongjia Zhou

A cardiomyocyte differentiation in vitro system from zebrafish embryos remains to be established. Here, we have determined pluripotency window of zebrafish embryos by analyzing their gene-expression patterns of pluripotency factors together with markers of three germ layers, and have found that zebrafish undergoes a very narrow period of pluripotency maintenance from zygotic genome activation t...

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