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Soon-Kyung Hwang et al.
CARCINOGENESIS (2014)
Tumor suppressor protein Pdcd4 interacts with Daxx and modulates the stability of Daxx and the Hipk2-dependent phosphorylation of p53 at serine 46
N. Kumar et al.
ONCOGENESIS (2013)
The role of mammalian poly(A)-binding proteins in co-ordinating mRNA turnover
Matthew Brook et al.
BIOCHEMICAL SOCIETY TRANSACTIONS (2012)
Protein Arginine Methyltransferase 5 Accelerates Tumor Growth by Arginine Methylation of the Tumor Suppressor Programmed Cell Death 4
Matthew A. Powers et al.
CANCER RESEARCH (2011)
Tumor Suppressor Protein Pdcd4 Inhibits Translation of p53 mRNA
Lena Wedeken et al.
JOURNAL OF BIOLOGICAL CHEMISTRY (2011)
Pdcd4 directly binds the coding region of c-myb mRNA and suppresses its translation
P. Singh et al.
ONCOGENE (2011)
Regulation and function of miRNA-21 in health and disease
Regalla Kumarswamy et al.
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Regulation of mRNA Translation and Stability by microRNAs
Marc Robert Fabian et al.
ANNUAL REVIEW OF BIOCHEMISTRY, VOL 79 (2010)
Poly(A)-binding protein (PABP): a common viral target
Richard W. P. Smith et al.
BIOCHEMICAL JOURNAL (2010)
Programmed Cell Death Protein 4 Down-regulates Y-Box Binding Protein-1 Expression via a Direct Interaction with Twist1 to Suppress Cancer Cell Growth
Masaki Shiota et al.
CANCER RESEARCH (2009)
Structural basis for translational inhibition by the tumour suppressor Pdcd4
Portia G. Loh et al.
EMBO JOURNAL (2009)
The SXL-UNR Corepressor Complex Uses a PABP-Mediated Mechanism to Inhibit Ribosome Recruitment to msl-2 mRNA
Kent E. Duncan et al.
MOLECULAR CELL (2009)
Disruption of the Pdcd4 tumor suppressor gene in chicken DT40 cells reveals its role in the DNA-damage response
P. Singh et al.
ONCOGENE (2009)
Crystal structure of the eIF4A-PDCD4 complex
Jeong Ho Chang et al.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2009)
Neural RNA-binding protein Musashi1 inhibits translation initiation by competing with eIF4G for PABP
Hironori Kawahara et al.
JOURNAL OF CELL BIOLOGY (2008)
MicroRNA-21 promotes cell transformation by targeting the programmed cell death 4 gene
Z. Lu et al.
ONCOGENE (2008)
siRNA-mediated knockdown of Pdcd4 expression causes upregulation of p21(Waf1/Cip1) expression
N. Bitomsky et al.
ONCOGENE (2008)
PDCD4 inhibits translation initiation by binding to elF4A using both its MA3 domains
Chikako Suzuki et al.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2008)
MicroRNA-21 (miR-21) post-transcriptionally downregulates tumor suppressor Pdcd4 and stimulates invasion, intravasation and metastasis in colorectal cancer
I. A. Asangani et al.
ONCOGENE (2008)
Downregulation of tumor suppressor Pdcd4 promotes invasion and activates both β-catenin/Tcf and AP-1-dependent transcription in colon carcinoma cells
Q. Wang et al.
ONCOGENE (2008)
Programmed cell death 4 (PDCD4) is an important functional target of the microRNA miR-21 in breast cancer cells
Lisa B. Frankel et al.
JOURNAL OF BIOLOGICAL CHEMISTRY (2008)
Loss of programmed cell death 4 expression marks adenoma-carcinoma transition, correlates inversely with phosphorylated protein kinase B, and is an independent prognostic factor in resected colorectal cancer
Giridhar Mudduluru et al.
CANCER (2007)
Structure of the C-terminal MA-3 domain of the tumour suppressor protein Pdcd4 and characterization of its interaction with eIF4A
L. C. Waters et al.
ONCOGENE (2007)
Tumor suppressor Pdcd4 inhibits invasion/intravasation and regulates urokinase receptor (u-PAR) gene expression via Sp-transcription factors
J. H. Leupold et al.
ONCOGENE (2007)
Structural basis for inhibition of translation by the tumor suppressor Pdcd4
Nicole LaRonde-LeBlanc et al.
MOLECULAR AND CELLULAR BIOLOGY (2007)
S6K1- and βTRCP-mediated degradation of PDCD4 promotes protein translation and cell growth
N. Valerio Dorrello et al.
SCIENCE (2006)
Involvement of programmed cell death 4 in transforming growth factor-β1-induced apoptosis in human hepatocellular carcinoma
H. Zhang et al.
ONCOGENE (2006)
A mechanism of translational repression by competition of Paip2 with eIF4G for poly(A) binding protein (PABP) binding
Muhammad M. Karim et al.
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2006)
Tumorigenesis suppressor Pdcd4 down-regulates mitogen-activated protein kinase kinase kinase kinase 1 expression to suppress colon carcinoma cell invasion
HS Yang et al.
MOLECULAR AND CELLULAR BIOLOGY (2006)
Akt phosphorylates and regulates Pdcd4 tumor suppressor protein
A Palamarchuk et al.
CANCER RESEARCH (2005)
Mammalian poly(A)-binding protein is a eukaryotic translation initiation factor, which acts via multiple mechanisms
A Kahvejian et al.
GENES & DEVELOPMENT (2005)
Transformation suppressor protein Pdcd4 interferes with JNK-mediated phosphorylation of c-Jun and recruitment of the coactivator p300 by c-Jun
N Bitomsky et al.
ONCOGENE (2004)
Induction of PDCD4 tumor suppressor gene expression by RAR agonists, antiestrogen and HER-2/neu antagonist in breast cancer cells. Evidence for a role in apoptosis
O Afonja et al.
ONCOGENE (2004)
A novel function of the MA-3 domains in transformation and translation suppressor Pdcd4 is essential for its binding to eukaryotic translation initiation factor 4A
HS Yang et al.
MOLECULAR AND CELLULAR BIOLOGY (2004)
Loss of PDCD4 expression in human lung cancer correlates with tumour progression and prognosis
Y Chen et al.
JOURNAL OF PATHOLOGY (2003)
The transformation suppressor protein Pdcd4 shuttles between nucleus and cytoplasm and binds RNA
M Böhm et al.
ONCOGENE (2003)
Pdcd4 suppresses tumor phenotype in JB6 cells by inhibiting AP-1 transactivation
HS Yang et al.
ONCOGENE (2003)
The transformation suppressor Pdcd4 is a novel eukaryotic translation initiation factor 4A binding protein that inhibits translation
HS Yang et al.
MOLECULAR AND CELLULAR BIOLOGY (2003)
Poly(A)-binding proteins: multifunctional scaffolds for the post-transcriptional control of gene expression
DA Mangus et al.
GENOME BIOLOGY (2003)
Translational repression by a novel partner of human poly(A) binding protein, Paip2
K Khaleghpour et al.
MOLECULAR CELL (2001)