Li Qingchang, Omori Yasufumi, Nishikawa Yuji, Yoshioka Toshiaki, Yamamoto Youhei, Enomoto Katsuhiko
Department of Pathology and Immunology, Akita University School of Medicine, 1-1-1 Hondo, Akita, Japan.
Int J Cancer. 2007 Aug 1;121(3):536-46. doi: 10.1002/ijc.22696.
Connexins have long been believed to suppress tumour development during carcinogenesis by exerting gap junctional intercellular communication (GJIC). Although GJIC is abrogated in hepatocellular carcinoma (HCC), connexin32 (Cx32) protein tends to remain expressed in cytoplasm, but not in cell-cell contact areas; thus, it is incapable of forming gap junctions. Hypothesising that cytoplasmic Cx32 protein that has accumulated in HCC should have its proper functions, which are independent of GJIC, we established an inducible expression system of Cx32 in human HuH7 HCC cells, which were unable to support the formation of Cx32-mediated gap junctions, so that Cx32 protein could be overexpressed by doxycycline (Dox) withdrawal. Although the established clone HuH7 Tet-off Cx32 cells exhibited a 4-fold increase in Cx32 expression after Dox withdrawal, none of them were dye-coupled, and Cx32 protein was retained in the Golgi apparatus. However, the proliferation rate of the HuH7 Tet-off Cx32 cells was significantly higher in the Dox-free medium than in the Dox-supplemented one. Transwell assays also revealed that Dox withdrawal enhanced serum-stimulated motility and invasiveness into Matrigel of the HuH7 Tet-off Cx32 cells. Furthermore, when HuH7 Tet-off Cx32 cells were xenografted into the liver of SCID mice, only the mice to which no Dox was administered developed metastatic lesions, indicating that overexpression of cytoplasmic Cx32 protein induced metastasis of HuH7 cells. Our results suggest that, while Cx32-mediated GJIC suppresses the development of HCCs, cytoplasmic Cx32 protein exerts effects favourable for HCC progression, such as invasion and metastasis, once the cells have acquired a malignant phenotype.
长期以来,人们一直认为连接蛋白通过发挥间隙连接细胞间通讯(GJIC)来抑制致癌过程中的肿瘤发展。尽管肝细胞癌(HCC)中GJIC被废除,但连接蛋白32(Cx32)蛋白往往仍在细胞质中表达,而不在细胞 - 细胞接触区域表达;因此,它无法形成间隙连接。假设在HCC中积累的细胞质Cx32蛋白应具有其独立于GJIC的适当功能,我们在人HuH7 HCC细胞中建立了Cx32的诱导表达系统,该细胞无法支持Cx32介导的间隙连接的形成,从而使Cx32蛋白可以通过停用强力霉素(Dox)来过度表达。尽管建立的克隆HuH7 Tet-off Cx32细胞在停用Dox后Cx32表达增加了4倍,但它们均未发生染料偶联,并且Cx32蛋白保留在高尔基体中。然而,HuH7 Tet-off Cx32细胞在无Dox培养基中的增殖率明显高于添加Dox的培养基。Transwell分析还显示,停用Dox增强了HuH7 Tet-off Cx32细胞的血清刺激的运动性和对基质胶的侵袭性。此外,当将HuH7 Tet-off Cx32细胞异种移植到SCID小鼠的肝脏中时,只有未施用Dox的小鼠发生了转移病变,这表明细胞质Cx32蛋白的过表达诱导了HuH7细胞的转移。我们的结果表明,虽然Cx32介导的GJIC抑制HCC的发展,但一旦细胞获得恶性表型,细胞质Cx32蛋白就会发挥有利于HCC进展的作用,如侵袭和转移。