TY - JOUR
T1 - Loss of brain-enriched miR-124 microRNA enhances stem-like traits and invasiveness of glioma cells
AU - Xia, Hongping
AU - Cheung, William K.C.
AU - Ng, Samuel S.
AU - Jiang, Xiaochun
AU - Jiang, Songshan
AU - Sze, Johnny
AU - Leung, Gilberto K.K.
AU - Lu, Gang
AU - Chan, Danny T.M.
AU - Bian, Xiu Wu
AU - Kung, Hsiang Fu
AU - Poon, Wai Sang
AU - Lin, Marie C.
PY - 2012/3/23
Y1 - 2012/3/23
N2 - miR-124 is a brain-enriched microRNA that plays a crucial role in neural development and has been shown to be down-regulated in glioma and medulloblastoma, suggesting its possible involvement in brain tumor progression. Here, we show that miR-124 is down-regulated in a panel of different grades of glioma tissues and in all of the human glioma cell lines we examined. By integrated bioinformatics analysis and experimental confirmation, we identified SNAI2, which is often up-regulated in glioma, as a direct functional target of miR-124. Because SNAI2 has been shown to regulate stem cell functions, we examined the roles of miR-124 and SNAI2 in glioma cell stem-like traits. The results showed that overexpression of miR-124 and knockdown of SNAI2 reduced neurosphere formation, CD133 + cell subpopulation, and stem cell marker (BMI1, Nanog, and Nestin) expression, and these effects could be rescued by re-expression of SNAI2. Furthermore, enhanced miR-124 expression significantly inhibited glioma cell invasion in vitro. Finally, stable overexpression of miR-124 and knockdown of SNAI2 inhibited the tumorigenicity and invasion of glioma cells in vivo. These findings reveal, for the first time, that the tumor suppressor activity of miR-124 could be partly due to its inhibitory effects on glioma stem-like traits and invasiveness through SNAI2.
AB - miR-124 is a brain-enriched microRNA that plays a crucial role in neural development and has been shown to be down-regulated in glioma and medulloblastoma, suggesting its possible involvement in brain tumor progression. Here, we show that miR-124 is down-regulated in a panel of different grades of glioma tissues and in all of the human glioma cell lines we examined. By integrated bioinformatics analysis and experimental confirmation, we identified SNAI2, which is often up-regulated in glioma, as a direct functional target of miR-124. Because SNAI2 has been shown to regulate stem cell functions, we examined the roles of miR-124 and SNAI2 in glioma cell stem-like traits. The results showed that overexpression of miR-124 and knockdown of SNAI2 reduced neurosphere formation, CD133 + cell subpopulation, and stem cell marker (BMI1, Nanog, and Nestin) expression, and these effects could be rescued by re-expression of SNAI2. Furthermore, enhanced miR-124 expression significantly inhibited glioma cell invasion in vitro. Finally, stable overexpression of miR-124 and knockdown of SNAI2 inhibited the tumorigenicity and invasion of glioma cells in vivo. These findings reveal, for the first time, that the tumor suppressor activity of miR-124 could be partly due to its inhibitory effects on glioma stem-like traits and invasiveness through SNAI2.
UR - https://www.scopus.com/pages/publications/84858992906
U2 - 10.1074/jbc.M111.332627
DO - 10.1074/jbc.M111.332627
M3 - 文章
C2 - 22253443
AN - SCOPUS:84858992906
SN - 0021-9258
VL - 287
SP - 9962
EP - 9971
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 13
ER -