Cholangiocarcinoma PDHA1 succinylation suppresses macrophage antigen presentation via alpha-ketoglutaric acid accumulation.

胆管癌 PDHA1 琥珀酰化通过 α-酮戊二酸的积累抑制巨噬细胞抗原呈递

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作者:Zhang Ning, Sun Linmao, Zhou Shuo, Ji Changyong, Cui Tianming, Chu Qi, Ye Jiareng, Liang Shuhang, Ma Kun, Liu Yufeng, Li Xianying, Guo Xinyu, Zhang Weizhi, Gu Xuetian, Cheng Cheng, Zha Qingrui, Tao Shengwei, Zhang Yunguang, Chu Junhui, Wu Chenghui, Zhang Yuchen, Wang Jiabei, Liu Yao, Liu Lianxin
Gemcitabine combined with cisplatin is the first-line chemotherapy for advanced cholangiocarcinoma, but drug resistance remains a challenge, leading to unsatisfactory therapeutic effect. Here, we elucidate the possibility of chemotherapy regimens sensitized by inhibiting succinylation in patients with cholangiocarcinoma from the perspective of post-translational modification. Our omics analysis reveals that succinylation of PDHA1 lysine 83, a key enzyme in the tricarboxylic acid cycle, alters PDH enzyme activity, modulates metabolic flux, and leads to alpha-ketoglutaric acid accumulation in the tumor microenvironment. This process activates the OXGR1 receptor on macrophages, triggering MAPK signaling and inhibiting MHC-II antigen presentation, which promotes immune escape and tumor progression. Moreover, we show that inhibiting PDHA1 succinylation with CPI-613 enhances the efficacy of gemcitabine and cisplatin. Targeting PDHA1 succinylation may be a promising strategy to improve treatment outcomes in cholangiocarcinoma and warrants further clinical exploration.

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