Seo Sang Hyun, Cho Kyung Joo, Park Hye Jung, Kim Hyemi, Lee Hye Won, Kim Beom Kyung, Park Jun Yong, Kim Do Young, Ahn Sang Hoon, Kim Seung Up
Department of Internal Medicine, Graduate School of Medical Science, Brain Korea 21 Project, Yonsei University College of Medicine Seoul, Korea.
Yonsei Liver Center, Severance Hospital Seoul, Korea.
Am J Cancer Res. 2021 Oct 15;11(10):4788-4806. eCollection 2021.
The expression of Dickkopf-1 (DKK1), a negative regulator of the Wnt/β-catenin signaling pathway, is upregulated in hepatocellular carcinoma (HCC). Here, we investigated the tumorigenic and angiogenic potential of DKK1 in HCC. Stable cell lines were established using the clustered regularly interspaced short palindromic repeats (CRISPR)-associated nuclease 9 (CRISPR/Cas9)-based DKK1 knock-out system in Hep3B cells and the tetracycline-based DKK1 inducible system in Huh7 cells. Multicellular tumor spheroids (MCTSs) were cultured using Hep3B stable cells. We also employed xenografts generated using Hep3B stable cells and transgenic mouse models established using hydrodynamic tail vein injection. The angiogenic potential increased in HUVECs treated with CM from Huh7 stable cells with high DKK1 expression and Hep3B wild-type cells. DKK1 accelerated the downstream molecules of vascular endothelial growth factor receptor 2 (VEGFR2)-mediated mTOR/p70 S6 kinase (p70S6K) signaling. MCTSs generated using Hep3B wild-type cells promoted compact spheroid formation and increased the expression of CD31 and epithelial-mesenchymal transition (EMT) markers, and increased the VEGFR2-mediated mTOR/p70S6K signaling, compared to the controls (all <0.01). Xenograft tumors generated using Hep3B cells with DKK1 knock-out (n=10) exhibited slower growth than, the controls (n=10) and the expression of Ki-67, VEGFR2, CD31 and EMT markers decreased (all <0.05). In addition, forced DKK1 expression with HRAS in transgenic mouse livers (n=5) resulted in the formation of more tumors and increased expression of downstream molecules of VEGFR2-mediated mTOR/p70S6K signaling pathway as well as Ki67, CD31 and EMT markers (<0.05), compared to that of the controls (n=5). Our findings indicate that DKK1 facilitates angiogenesis and tumorigenesis by upregulating VEGFR2-mediated mTOR/p70S6K signaling in HCC.
Dickkopf-1(DKK1)是Wnt/β-连环蛋白信号通路的负调节因子,其表达在肝细胞癌(HCC)中上调。在此,我们研究了DKK1在HCC中的致瘤和血管生成潜力。使用基于成簇规律间隔短回文重复序列(CRISPR)相关核酸酶9(CRISPR/Cas9)的DKK1敲除系统在Hep3B细胞中建立稳定细胞系,并在Huh7细胞中建立基于四环素的DKK1诱导系统。使用Hep3B稳定细胞培养多细胞肿瘤球体(MCTS)。我们还采用了用Hep3B稳定细胞生成的异种移植瘤以及通过尾静脉液压注射建立的转基因小鼠模型。用来自高表达DKK1的Huh7稳定细胞和Hep3B野生型细胞的条件培养基处理的人脐静脉内皮细胞(HUVEC)的血管生成潜力增加。DKK1加速了血管内皮生长因子受体2(VEGFR2)介导的mTOR/p70 S6激酶(p70S6K)信号传导的下游分子。与对照相比(均<0.01),使用Hep3B野生型细胞生成的MCTS促进了紧密球体的形成,并增加了CD31和上皮-间质转化(EMT)标志物的表达,以及VEGFR2介导的mTOR/p70S6K信号传导。使用DKK1敲除的Hep3B细胞生成的异种移植瘤(n = 10)生长比对照(n = 10)慢,并且Ki-67、VEGFR2、CD31和EMT标志物的表达降低(均<0.05)。此外,与对照(n = 5)相比,在转基因小鼠肝脏(n = 5)中用HRAS强制表达DKK1导致形成更多肿瘤,并增加了VEGFR2介导的mTOR/p70S6K信号通路的下游分子以及Ki67、CD31和EMT标志物的表达(<0.05)。我们的研究结果表明,DKK1通过上调HCC中VEGFR2介导的mTOR/p70S6K信号传导促进血管生成和肿瘤发生。