Negative Regulation of CPSF6 Suppresses the Warburg Effect and Angiogenesis Leading to Tumor Progression Via c-Myc Signaling Network: Potential Therapeutic Target for Liver Cancer Therapy.

IF 8.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
International Journal of Biological Sciences Pub Date : 2024-06-17 eCollection Date: 2024-01-01 DOI:10.7150/ijbs.93462
Deok Yong Sim, Hyo-Jung Lee, Chi-Hoon Ahn, JiEon Park, Su-Yeon Park, Bum-Ju Kil, Bum-Sang Shim, Bonglee Kim, Sung-Hoon Kim
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Abstract

In this study, we explored the oncogenic mechanism of cleavage and polyadenylation-specific factor 6 (CPSF6) in hepatocellular carcinoma (HCC). CPSF6 was overexpressed in HCC tissues with poor survival rates compared to normal tissues. Hence, CPSF6 depletion suppressed cell viability and colony formation, induced apoptosis via PARP cleavage, and increased the sub-G1 population of Hep3B and Huh7 cells. In addition, CPSF6 enhanced the stability of c-Myc via their binding through nuclear co-localization by binding to c-Myc at the site of 258-360. Furthermore, c-Myc degradation by CPSF6 depletion was disturbed by FBW7 depletion or treatment with the proteasomal inhibitor MG132. Additionally, CPSF6 depletion suppressed the Warburg effect by inhibiting glucose, HK2, PKM2, LDH, and lactate; showed a synergistic effect with Sorafenib in Hep3B cells; and inhibited angiogenesis by tube formation and CAM assays, along with decreased expression and production of vascular endothelial growth factor (VEGF). Notably, CPSF6 depletion attenuated PD-L1 expression and increased Granzyme B levels, along with an increase in the percentage of CD4/CD8 cells in the splenocytes of BALB/c nude mice bearing Hep3B cells. Consistently, immunohistochemistry showed that CPSF6 depletion reduced the growth of Hep3B cells in BALB/c mice in orthotopic and xenograft tumor models by inhibiting tumor microenvironment-associated proteins. Overall, these findings suggest that CPSF6 enhances the Warburg effect for immune escape and angiogenesis, leading to cancer progression via c-Myc, mediated by the HK, PD-L1, and VEGF networks, with synergistic potential with sorafenib as a molecular target for liver cancer therapy.

CPSF6 的负调控抑制了通过 c-Myc 信号网络导致肿瘤进展的沃伯格效应和血管生成:肝癌治疗的潜在治疗靶点。
本研究探讨了肝细胞癌(HCC)中裂解和多腺苷酸化特异性因子 6(CPSF6)的致癌机制。与正常组织相比,CPSF6 在存活率较低的 HCC 组织中过表达。因此,消耗 CPSF6 可抑制细胞活力和集落形成,通过 PARP 分裂诱导细胞凋亡,并增加 Hep3B 和 Huh7 细胞的亚 G1 群体。此外,CPSF6 通过与 c-Myc 在 258-360 位点的核共定位结合,增强了 c-Myc 的稳定性。此外,FBW7 的消耗或蛋白酶体抑制剂 MG132 的处理会干扰 CPSF6 的降解。此外,抑制 CPSF6 还可抑制葡萄糖、HK2、PKM2、LDH 和乳酸盐,从而抑制沃伯格效应;在 Hep3B 细胞中与索拉非尼(Sorafenib)产生协同效应;通过血管管形成和 CAM 试验抑制血管生成,同时降低血管内皮生长因子(VEGF)的表达和生成。值得注意的是,消耗 CPSF6 可减轻 PD-L1 的表达,增加 Granzyme B 的水平,同时增加携带 Hep3B 细胞的 BALB/c 裸鼠脾细胞中 CD4/CD8 细胞的百分比。免疫组化结果表明,通过抑制肿瘤微环境相关蛋白,CPSF6 的耗竭可减少 BALB/c 小鼠正位和异种移植肿瘤模型中 Hep3B 细胞的生长。总之,这些研究结果表明,CPSF6能增强免疫逃逸和血管生成的沃伯格效应,通过c-Myc导致癌症进展,并由HK、PD-L1和VEGF网络介导,具有与索拉非尼作为肝癌治疗分子靶点的协同潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Biological Sciences
International Journal of Biological Sciences 生物-生化与分子生物学
CiteScore
16.90
自引率
1.10%
发文量
413
审稿时长
1 months
期刊介绍: The International Journal of Biological Sciences is a peer-reviewed, open-access scientific journal published by Ivyspring International Publisher. It dedicates itself to publishing original articles, reviews, and short research communications across all domains of biological sciences.
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