Title | STAR RNA-binding protein Quaking suppresses cancer via stabilization of specific miRNA. |
Publication Type | Journal Article |
Year of Publication | 2012 |
Authors | Chen A-J, Paik J-H, Zhang H, Shukla SA, Mortensen R, Hu J, Ying H, Hu B, Hurt J, Farny N, Dong C, Xiao Y, Y Wang A, Silver PA, Chin L, Vasudevan S, DePinho RA |
Journal | Genes Dev |
Volume | 26 |
Issue | 13 |
Pagination | 1459-72 |
Date Published | 2012 Jul 01 |
ISSN | 1549-5477 |
Keywords | Animals, Cell Line, Glioblastoma, Humans, Mice, MicroRNAs, RNA Stability, RNA-Binding Proteins, Signal Transduction, Tumor Suppressor Protein p53 |
Abstract | Multidimensional cancer genome analysis and validation has defined Quaking (QKI), a member of the signal transduction and activation of RNA (STAR) family of RNA-binding proteins, as a novel glioblastoma multiforme (GBM) tumor suppressor. Here, we establish that p53 directly regulates QKI gene expression, and QKI protein associates with and leads to the stabilization of miR-20a; miR-20a, in turn, regulates TGFβR2 and the TGFβ signaling network. This pathway circuitry is substantiated by in silico epistasis analysis of its components in the human GBM TCGA (The Cancer Genome Atlas Project) collection and by their gain- and loss-of-function interactions in in vitro and in vivo complementation studies. This p53-QKI-miR-20a-TGFβ pathway expands our understanding of the p53 tumor suppression network in cancer and reveals a novel tumor suppression mechanism involving regulation of specific cancer-relevant microRNAs. |
DOI | 10.1101/gad.189001.112 |
Alternate Journal | Genes Dev |
PubMed ID | 22751500 |
PubMed Central ID | PMC3403014 |
Grant List | R01CA99041 / CA / NCI NIH HHS / United States GM057476 / GM / NIGMS NIH HHS / United States 5P01CA95616 / CA / NCI NIH HHS / United States |
Related Lab:
Related Faculty:
Ji-Hye Paik, Ph.D.