selected publications
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Precision medicine in the era of artificial intelligence: implications in chronic disease management.
Journal of translational medicine.
2020
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Times cited: 131 -
Long Noncoding RNA PURPL Suppresses Basal p53 Levels and Promotes Tumorigenicity in Colorectal Cancer.
Cell reports.
2017
Academic Article
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Times cited: 126 -
Prosurvival long noncoding RNA PINCR regulates a subset of p53 targets in human colorectal cancer cells by binding to Matrin 3.
eLife.
2017
Academic Article
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Times cited: 72 -
MicroRNAs in obesity-associated disorders.
Archives of biochemistry and biophysics.
2015
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Times cited: 43 -
The CDX1-microRNA-215 axis regulates colorectal cancer stem cell differentiation.
Proceedings of the National Academy of Sciences of the United States of America.
2015
Academic Article
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Times cited: 94 -
Growth differentiation factor-15 encodes a novel microRNA 3189 that functions as a potent regulator of cell death.
Cell death and differentiation.
2015
Academic Article
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Times cited: 29 -
A biochemical approach to identify direct microRNA targets.
Methods in molecular biology (Clifton, N.J.).
2015
Academic Article
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Times cited: 16 -
Selective targeting of KRAS-mutant cells by miR-126 through repression of multiple genes essential for the survival of KRAS-mutant cells.
Oncotarget.
2014
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Times cited: 20 -
Mutant p53 exerts oncogenic effects through microRNAs and their target gene networks.
FEBS letters.
2014
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Times cited: 26 -
A mutant p53/let-7i-axis-regulated gene network drives cell migration, invasion and metastasis.
Oncogene.
2014
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Times cited: 64 -
A p21-ZEB1 complex inhibits epithelial-mesenchymal transition through the microRNA 183-96-182 cluster.
Molecular and cellular biology.
2013
Academic Article
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Times cited: 94 -
Growth inhibition by miR-519 via multiple p21-inducing pathways.
Molecular and cellular biology.
2012
Academic Article
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Times cited: 65 -
G-quadruplex RNA structure as a signal for neurite mRNA targeting.
EMBO reports.
2011
Academic Article
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Times cited: 199 -
Cells lacking the fragile X mental retardation protein (FMRP) have normal RISC activity but exhibit altered stress granule assembly.
Molecular biology of the cell.
2008
Academic Article
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Times cited: 79 -
The G-quartet containing FMRP binding site in FMR1 mRNA is a potent exonic splicing enhancer.
Nucleic acids research.
2008
Academic Article
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Times cited: 155