Yu Weihua, Chen Jionghuang, Tong Yifan, Zhu Linghua, Deng Yuezheng, He Junju, Zhong Chenxi, Cai Xiujun
Department of General Surgery, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou, 310000, China.
Liver Regeneration and Metabolism Study Group, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou, 310000, China.
Heliyon. 2024 Sep 7;10(17):e37592. doi: 10.1016/j.heliyon.2024.e37592. eCollection 2024 Sep 15.
Metabolic enzymes play significant roles in tumor growth via nonmetabolic biological processes. However, more research is needed to understand their roles in immune modulation. This study revealed that 3-hydroxysteroid dehydrogenase (NSDHL) expression was elevated in cholangiocarcinoma. In vitro experiments demonstrated that NSDHL had no effect on the growth or invasion of cholangiocarcinoma cells in an artificial laboratory environment. However, NSDHL overexpression strongly enhanced the promotion of AKT/YAP-driven cholangiocarcinoma. NSDHL bound to STING and facilitated its degradation via ubiquitination. This inhibited the cyclic-GMP-AMP-synthase-STING signaling pathway and reduced the synthesis of IFNβ. A study revealed an inverse relationship between the expression of NSDHL and the infiltration of NK cells, activated CD4 T cells, and neutrophils in individuals who were diagnosed with cholangiocarcinoma. This study elucidates the role of NSDHL, in addition to its established metabolic functions, NSDHL regulates the cyclic-GMP-AMP-synthase signaling pathway. By exploring this interplay, this research enriches our understanding of the functions of NSDHL in terms of cellular dynamics, offering novel insights into the modulation of crucial biological pathways.
代谢酶通过非代谢生物学过程在肿瘤生长中发挥重要作用。然而,需要更多研究来了解它们在免疫调节中的作用。本研究表明,3-羟基类固醇脱氢酶(NSDHL)在胆管癌中表达升高。体外实验表明,在人工实验室环境中,NSDHL对胆管癌细胞的生长或侵袭没有影响。然而,NSDHL的过表达强烈增强了AKT/YAP驱动的胆管癌的进展。NSDHL与STING结合并通过泛素化促进其降解。这抑制了环磷酸鸟苷-腺苷酸合酶-STING信号通路并减少了IFNβ的合成。一项研究揭示了在被诊断为胆管癌的个体中,NSDHL的表达与NK细胞、活化的CD4 T细胞和中性粒细胞的浸润之间存在负相关关系。本研究阐明了NSDHL的作用,除了其已确定的代谢功能外,NSDHL还调节环磷酸鸟苷-腺苷酸合酶信号通路。通过探索这种相互作用,本研究丰富了我们对NSDHL在细胞动力学方面功能的理解,为关键生物学途径的调节提供了新的见解。