Li Cong, Li Hong, Zhang Peng, Yu Li-Jun, Huang Tian-Miao, Song Xue, Kong Qing-You, Dong Jian-Li, Li Pei-Nan, Liu Jia
Liaoning Laboratory of Cancer Genetics and Epigenetics and Department of Cell Biology, Dalian Medical University, Dalian 116044, China.
Department of Orthopedic Surgery, Second Hospital of Dalian Medical University, Dalian 116011, China.
Nutrients. 2016 Dec 27;9(1):3. doi: 10.3390/nu9010003.
Activated STAT3 signaling is critical for human medulloblastoma cells. SHP2, SOCS3 and PIAS3 are known as the negative regulators of STAT3 signaling, while their relevance to frequent STAT3 activation in medulloblastomas remains unknown.
Tissue microarrays were constructed with 17 tumor-surrounding noncancerous brain tissues and 61 cases of the classic medulloblastomas, 44 the large-cell medulloblastomas, and 15 nodular medulloblastomas, which were used for immunohistochemical profiling of STAT3, SHP2, SOCS3 and PIAS3 expression patterns and the frequencies of STAT3 nuclear translocation. Three human medulloblastoma cell lines (Daoy, UW228-2 and UW228-3) were cultured with and without 100 μM resveratrol supplementation. The influences of resveratrol in SHP2, SOCS3 and PIAS3 expression and SOCS3 knockdown in STAT3 activation were analyzed using multiple experimental approaches.
SHP2, SOCS3 and PIAS3 levels are reduced in medulloblastomas in vivo and in vitro, of which PIAS3 downregulation is more reversely correlated with STAT3 activation. In resveratrol-suppressed medulloblastoma cells with STAT3 downregulation and decreased incidence of STAT3 nuclear translocation, PIAS3 is upregulated, the SHP2 level remains unchanged and SOCS3 is downregulated. SOCS3 proteins are accumulated in the distal ends of axon-like processes of resveratrol-differentiated medulloblastoma cells. Knockdown of SOCS3 expression by siRNA neither influences cell proliferation nor STAT3 activation or resveratrol sensitivity but inhibits resveratrol-induced axon-like process formation.
Our results suggest that (1) the overall reduction of SHP2, SOCS3 and PIAS3 in medulloblastoma tissues and cell lines; (2) the more inverse relevance of PIAS3 expression with STAT3 activation; (3) the favorable prognostic values of PIAS3 for medulloblastomas and (4) the involvement of SOCS3 in resveratrol-promoted axon regeneration of medulloblastoma cells.
活化的STAT3信号传导对人髓母细胞瘤细胞至关重要。SHP2、SOCS3和PIAS3是已知的STAT3信号传导负调节因子,但其与髓母细胞瘤中频繁的STAT3激活的相关性尚不清楚。
构建组织芯片,包含17例肿瘤周围非癌性脑组织以及61例经典髓母细胞瘤、44例大细胞髓母细胞瘤和15例结节性髓母细胞瘤,用于STAT3、SHP2、SOCS3和PIAS3表达模式的免疫组织化学分析以及STAT3核转位频率的检测。三种人髓母细胞瘤细胞系(Daoy、UW228 - 2和UW228 - 3)在添加和不添加100 μM白藜芦醇的情况下进行培养。使用多种实验方法分析白藜芦醇对SHP2、SOCS3和PIAS3表达的影响以及SOCS3敲低对STAT3激活的影响。
SHP2、SOCS3和PIAS3水平在体内和体外的髓母细胞瘤中均降低,其中PIAS3下调与STAT3激活的相关性更呈负相关。在白藜芦醇抑制的髓母细胞瘤细胞中,STAT3下调且STAT3核转位发生率降低,PIAS3上调,SHP2水平不变,SOCS3下调。SOCS3蛋白在白藜芦醇分化的髓母细胞瘤细胞的轴突样突起末端积累。通过siRNA敲低SOCS3表达既不影响细胞增殖,也不影响STAT3激活或白藜芦醇敏感性,但抑制白藜芦醇诱导的轴突样突起形成。
我们的结果表明:(1)髓母细胞瘤组织和细胞系中SHP2、SOCS3和PIAS3总体降低;(2)PIAS3表达与STAT3激活的负相关性更强;(3)PIAS3对髓母细胞瘤具有良好的预后价值;(4)SOCS3参与白藜芦醇促进的髓母细胞瘤细胞轴突再生。