Tang Juan, Guo Yun-Shan, Yu Xiao-Ling, Huang Wan, Zheng Ming, Zhou Ying-Hui, Nan Gang, Wang Jian-Chao, Yang Hai-Jiao, Yu Jing-Min, Jiang Jian-Li, Chen Zhi-Nan
Cell Engineering Research Center and Department of Cell Biology, State Key Laboratory of Cancer Biology, State Key Discipline of Cell Biology, Fourth Military Medical University, Xi'an, China.
Oncotarget. 2015 Oct 27;6(33):34831-45. doi: 10.18632/oncotarget.5225.
Oscillations in intracellular Ca2+ concentrations ([Ca2+]i) mediate various cellular function. Although it is known that [Ca2+]i oscillations are susceptible to dysregulation in tumors, the tumor-specific regulators of [Ca2+]i oscillations are poorly characterized. We discovered that CD147 promotes hepatocellular carcinoma (HCC) metastasis and proliferation by enhancing the amplitude and frequency of [Ca2+]i oscillations in HCC cells. CD147 activates two distinct signaling pathways to regulate [Ca2+]i oscillations. By activating FAK-Src-IP3R1 signaling pathway, CD147 promotes Ca2+ release from endoplasmic reticulum (ER) and enhances the amplitude of [Ca2+]i oscillations. Furthermore, CD147 accelerates ER Ca2+refilling and enhances the frequency of [Ca2+]i oscillations through activating CaMKP-PAK1-PP2A-PLB-SERCA signaling pathway. Besides, CD147-promoted ER Ca2+ release and refilling are tightly regulated by changing [Ca2+]i. CD147 may activate IP3R1 channel under low [Ca2+]i conditions and CD147 may activate SERCA pump under high [Ca2+]i conditions. CD147 deletion suppresses HCC tumorigenesis and increases the survival rate of liver-specific CD147 knockout mice by regulating [Ca2+]i oscillations in vivo. Together, these results reveal that CD147 functions as a critical regulator of ER-dependent [Ca2+]i oscillations to promote oncogenic progression in HCC.
细胞内钙离子浓度([Ca2+]i)的振荡介导多种细胞功能。尽管已知[Ca2+]i振荡在肿瘤中易发生失调,但[Ca2+]i振荡的肿瘤特异性调节因子却鲜有描述。我们发现,CD147通过增强肝癌(HCC)细胞中[Ca2+]i振荡的幅度和频率来促进HCC转移和增殖。CD147激活两条不同的信号通路来调节[Ca2+]i振荡。通过激活FAK-Src-IP3R1信号通路,CD147促进内质网(ER)释放Ca2+并增强[Ca2+]i振荡的幅度。此外,CD147通过激活CaMKP-PAK1-PP2A-PLB-SERCA信号通路加速ER Ca2+再填充并提高[Ca2+]i振荡的频率。此外,CD147促进的ER Ca2+释放和再填充受[Ca2+]i变化的严格调控。在低[Ca2+]i条件下,CD147可能激活IP3R1通道;在高[Ca2+]i条件下,CD147可能激活SERCA泵。在体内,CD147缺失通过调节[Ca2+]i振荡抑制HCC肿瘤发生并提高肝脏特异性CD147基因敲除小鼠的存活率。总之,这些结果表明,CD147作为内质网依赖性[Ca2+]i振荡的关键调节因子,促进HCC的致癌进展。