Gu Chunming, Feng Maoxiao, Yin Zhao, Luo Xiaochuang, Yang Juhua, Li Yumin, Li Tianfu, Wang Ruirui, Fei Jia
Department of Biochemistry and Molecular Biology, Medical College of Jinan University, Guangzhou 510632, China.
Insititute of Chinese Integrative Medicine, Medical College of Jinan University, Guangzhou 510632, China.
Oncotarget. 2016 Apr 12;7(15):20561-73. doi: 10.18632/oncotarget.7987.
BCR/ABL is a well-known activator of multiple signaling pathways. RalA, a Ras downstream signaling molecule and a small GTPase, plays an important role in Bcr-Abl-induced leukemogenesis but the exact mechanism remains elusive. Here, we show that RalA GTPase activity is commonly high in chronic myelogenous leukemia (CML) cell lines and patient samples. Overexpression of RalA results in malignant transformation and progression, and induces resistance to imatinib (IM) in BaF3 and K562 cell lines. RalA reduced survival and led to IM resistance in a xenografted mouse model. Ablation of RalA by either siRNA or miR-181a, a RalA targeting microRNA, attenuated the malignant phenotypes in K562 cells. RBC8, a selective Ral inhibitor, enhanced the inhibitory effects of IM in K562, KCL22 and BaF3-P210 cells. Interestingly, the phospho-specific protein microarray assay revealed that multiple phosphorylation signal proteins were decreased by RalA inhibition, including SAPK, JNK, SRC, VEGFR2, P38 MAPK, c-Kit, JunB, and Keratin18. Among them, P38 MAPK and SAPK/JNK are Ras downstream signaling kinases. Taken together, RalA GTPase might be an important oncogene activating the Ras-related signaling pathway in CML.
BCR/ABL是多种信号通路的著名激活剂。RalA是一种Ras下游信号分子和小GTP酶,在Bcr-Abl诱导的白血病发生中起重要作用,但其确切机制仍不清楚。在这里,我们表明RalA GTP酶活性在慢性粒细胞白血病(CML)细胞系和患者样本中通常较高。RalA的过表达导致恶性转化和进展,并在BaF3和K562细胞系中诱导对伊马替尼(IM)的抗性。在异种移植小鼠模型中,RalA降低了存活率并导致对IM的抗性。通过siRNA或miR-181a(一种靶向RalA的微小RNA)消除RalA,可减弱K562细胞中的恶性表型。RBC8是一种选择性Ral抑制剂,可增强IM对K562、KCL22和BaF3-P210细胞的抑制作用。有趣的是,磷酸化特异性蛋白质微阵列分析显示,RalA抑制可降低多种磷酸化信号蛋白,包括SAPK、JNK、SRC、VEGFR2、P38 MAPK、c-Kit、JunB和角蛋白18。其中,P38 MAPK和SAPK/JNK是Ras下游信号激酶。综上所述,RalA GTP酶可能是激活CML中Ras相关信号通路的重要癌基因。