Reversine increases the plasticity of lineage-committed mammalian cells

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Reversine increases the plasticity of lineage-committed mammalian cells is …
instance of (P31):
scholarly articleQ13442814

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P819ADS bibcode2007PNAS..10410482C
P356DOI10.1073/PNAS.0704360104
P932PMC publication ID1965539
P698PubMed publication ID17566101
P5875ResearchGate publication ID6271178

P50authorPeter G. SchultzQ899840
P2093author name stringQisheng Zhang
Eric C Peters
Sheng Ding
Shuibing Chen
Wen Xiong
Shoutian Zhu
Shinichi Takanashi
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Mitogen-activated protein kinase modulation of nuclear factor-kappaB-induced granulocyte macrophage-colony-stimulating factor release from human alveolar macrophagesQ44519290
Osteoblasts induce osteopontin expression in response to attachment on fibronectin: demonstration of a common role for integrin receptors in the signal transduction processes of cell attachment and mechanical stimulation.Q47676690
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A transient cell cycle shift in Drosophila imaginal disc cells precedes multipotency.Q52057893
Suppression of SHP-2 and ERK signalling promotes self-renewal of mouse embryonic stem cells.Q52176534
Morphogenesis in Drosophila requires nonmuscle myosin heavy chain function.Q52228042
Dedifferentiation of mammalian myotubes induced by msx1Q73406479
P433issue25
P407language of work or nameEnglishQ1860
P921main subjectreversineQ6138777
P304page(s)10482-7
P577publication date2007-06-19
P1433published inProceedings of the National Academy of Sciences of the United States of AmericaQ1146531
P1476titleReversine increases the plasticity of lineage-committed mammalian cells
P478volume104

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