Cell Engineering Research Centre and Department of Cell Biology, State Key Laboratory of Cancer Biology, State Key Discipline of Cell Biology, Fourth Military Medical University, Xian 710032, Peoples Republic of China.
Cell Biol Int. 2011 Aug;35(8):811-7. doi: 10.1042/CBI20100916.
βig-h3 is a TGF-β (transforming growth factor β)-induced ECM (extracellular matrix) protein that induces the secretion of MMPs (matrix metalloproteinases). However, the mechanism of induction is yet to be established. In this study, siRNAs (small interfering RNAs) targeted against βig-h3 were transfected into SMMC-7721 cells [a HCC (human hepatocellular carcinoma) cell line] to knockdown the expression of βig-h3. We found that NiCl2, a potent blocker of extracellular Ca2+ entry, reduced βig-h3-induced secretion of MMP-2 and -9. Further investigation suggested that reduction in the levels of βig-h3 decreased the secretion of MMP-2 and -9 that was enhanced by an increase in the concentration of extracellular Ca2+. SNAP (S-nitroso-N-acetylpenicillamine), a NO (nitric oxide) donor, and 8-Br-cGMP (8-bromo-cGMP) inhibited thapsigargin-induced Ca2+ entry and MMP secretion in the invasive potential of human SMMC-7721 cells. Further, the inhibitory effects of 8-Br-cGMP and SNAP could be significantly enhanced by down-regulating βig-h3. βig-h3 attenuates the negative regulation of NO/cGMP-sensitive store-operated Ca2+ entry. Our findings suggest that the expression of βig-h3 might play an important role in the regulation of store-operated Ca2+ entry to increase the invasive potential of HCC cells.
βig-h3 是 TGF-β(转化生长因子-β)诱导的 ECM(细胞外基质)蛋白,可诱导 MMPs(基质金属蛋白酶)的分泌。然而,诱导机制尚待确定。在这项研究中,针对βig-h3 的 siRNA(小干扰 RNA)转染入 SMMC-7721 细胞(一种 HCC(人肝癌)细胞系)以敲低βig-h3 的表达。我们发现,NiCl2,一种有效的细胞外 Ca2+进入阻断剂,降低了βig-h3 诱导的 MMP-2 和 MMP-9 的分泌。进一步的研究表明,βig-h3 水平的降低降低了由细胞外 Ca2+浓度增加增强的 MMP-2 和 MMP-9 的分泌。NO(一氧化氮)供体 SNAP(S-亚硝基-N-乙酰青霉胺)和 8-Br-cGMP(8-溴-cGMP)抑制了人 SMMC-7721 细胞侵袭潜能中的 thapsigargin 诱导的 Ca2+内流和 MMP 分泌。此外,下调βig-h3 可以显著增强 8-Br-cGMP 和 SNAP 的抑制作用。βig-h3 减弱了 NO/cGMP 敏感的储存操纵型 Ca2+内流的负调节作用。我们的研究结果表明,βig-h3 的表达可能在调节储存操纵型 Ca2+内流以增加 HCC 细胞的侵袭潜能方面发挥重要作用。