MicroRNA-34c Inversely Couples the Biological Functions of the Runt-related Transcription Factor RUNX2 and the Tumor Suppressor p53 in Osteosarcoma
Author
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Deen, Margaretha van der
Author
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Taipaleenmäki, Hanna
es_CL
Author
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Zhang, Ying
es_CL
Author
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Teplyuk, Nadiya M.
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Author
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Gupta, Anurag
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Author
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Cinghu, Senthilkumar
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Author
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Shogren, Kristen
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Author
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Maran, Avudaiappan
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Author
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Yaszemski, Michael J.
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Author
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Ling, Ling
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Author
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Cool, Simon M.
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Author
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Leong, David T.
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Author
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Dierkes, Christian
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Author
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Zustin, Jozef
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Author
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Salto Tellez, Manuel
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Author
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Ito, Yoshiaki
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Author
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Bae, Suk-Chul
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Author
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Zielenska, María
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Author
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Squire, Jeremy A.
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Author
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Lian, Jane B.
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Author
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Stein, Janet L.
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Author
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Zambetti, Gerard P.
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Author
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Jones, Stephen N.
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Author
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Galindo Díaz, Mario Alex
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Author
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Hesse, Eric
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Author
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Stein, Gary S.
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Author
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Wijnen, Andre J. van
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Admission date
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2014-02-11T19:27:11Z
Available date
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2014-02-11T19:27:11Z
Publication date
dc.date.issued
2013
Cita de ítem
dc.identifier.citation
J. Biol. Chem. 2013, 288:21307-21319
en_US
Identifier
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doi: 10.1074/jbc.M112.445890
Identifier
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https://repositorio.uchile.cl/handle/2250/129276
General note
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Artículo de publicación ISI
en_US
Abstract
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Osteosarcoma (OS) is a primary bone tumor that is most prevalent
during adolescence. RUNX2, which stimulates differentiation
and suppresses proliferation of osteoblasts, is deregulated
in OS. Here, we define pathological roles of RUNX2 in the etiology
of OS and mechanisms by which RUNX2 expression is stimulated.
RUNX2 is often highly expressed in human OS biopsies
and cell lines. Small interference RNA-mediated depletion of
RUNX2 inhibits growth of U2OS OS cells. RUNX2 levels are
inversely linked to loss of p53 (which predisposes to OS) in distinct
OS cell lines and osteoblasts. RUNX2 protein levels
decrease upon stabilization of p53 with the MDM2 inhibitor
Nutlin-3. Elevated RUNX2 protein expression is post-transcriptionally
regulated and directly linked to diminished expression
of several validated RUNX2 targeting microRNAs in human OS
cells compared with mesenchymal progenitor cells. The p53-dependent
miR-34c is the most significantly down-regulated
RUNX2 targeting microRNAs in OS. Exogenous supplementation
of miR-34c markedly decreases RUNX2 protein levels,
whereas 3 -UTR reporter assays establish RUNX2 as a direct
target of miR-34c in OS cells. Importantly, Nutlin-3-mediated
stabilization of p53 increases expression of miR-34c and
decreases RUNX2. Thus, a novel p53-miR-34c-RUNX2 network
controls cell growth of osseous cells and is compromised in OS.
en_US
Lenguage
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en
en_US
Publisher
dc.publisher
The American Society for Biochemistry and Molecular Biology