Lv Mengzhu, Yang Xiaodan, Xu Congcong, Song Qingru, Zhao Hailian, Sun Tianjiao, Liu Jingtao, Zhang Yuan, Sun Guogui, Xue Yuanchao, Zhang Zhiqian
Key Laboratory of Carcinogenesis and Translational Research (Ministry of Education), Department of Cell Biology, Peking University Cancer Hospital & Institute, Beijing, 100142, P. R. China.
State Key Laboratory of Metabolic Dysregulation & Prevention and Treatment of Esophageal Cancer, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, 450052, P. R. China.
Adv Sci (Weinh). 2025 May;12(20):e2412553. doi: 10.1002/advs.202412553. Epub 2025 Apr 29.
Mitochondria Sirtuins including SIRT4 erase a variety of posttranslational modifications from mitochondria proteins, leading to metabolic reprogramming that acts as a tumor suppressor, oncogenic promotor, or both. However, the factors and the underlying mechanisms that stimulate and relay such a signaling cascade are poorly understood. Here, we reveal that the voltage-gated calcium channel subunit α2δ1-mediated calcium signaling can upregulate the expression of SIRT4, which is highly expressed in α2δ1-positive pancreatic tumor-initiating cells (TICs). Furthermore, SIRT4 is functionally sufficient and indispensable to promote TIC properties of pancreatic cancer cells by directly deacetylating ENO1 at K358, leading to attenuated ENO1's RNA-binding capacity, enhanced glycolytic substrate 2-PG affinity, and subsequently robust catalytic activity with boosted glycolytic ability and increased production of lactate acid. Interestingly, both SIRT4 and deacetylated mimetic of ENO1-K358 can increase the lactylation of histones at multiple sites including H3K9 and H3K18 sites, which resulted in epigenetic reprogramming to directly activate a variety of pathways that are essential for stemness. Hence, the study links α2δ1-mediated calcium signaling to SIRT4-mediated histone lactylation epigenetic reprogramming in promoting the stem cell-like properties of pancreatic cancer, which holds significant potential for the development of novel therapeutic strategies by targeting TICs of pancreatic cancer.
包括SIRT4在内的线粒体去乙酰化酶可去除线粒体蛋白上的多种翻译后修饰,导致代谢重编程,发挥肿瘤抑制、致癌促进或两者兼具的作用。然而,刺激和传递这种信号级联反应的因素及潜在机制尚不清楚。在此,我们发现电压门控钙通道亚基α2δ1介导的钙信号可上调SIRT4的表达,而SIRT4在α2δ1阳性的胰腺肿瘤起始细胞(TICs)中高表达。此外,SIRT4在功能上足以且不可或缺地通过直接使ENO1的K358位点去乙酰化来促进胰腺癌细胞的TIC特性,导致ENO1的RNA结合能力减弱、糖酵解底物2-PG亲和力增强,随后具有强大的催化活性,糖酵解能力增强且乳酸产量增加。有趣的是,SIRT4和ENO1-K358的去乙酰化模拟物均可增加包括H3K9和H3K18位点在内的多个位点组蛋白的乳酰化,这导致表观遗传重编程,直接激活多种对干性至关重要的途径。因此,该研究将α2δ1介导的钙信号与SIRT4介导的组蛋白乳酰化表观遗传重编程联系起来,以促进胰腺癌的干细胞样特性,这为通过靶向胰腺癌的TICs开发新的治疗策略具有巨大潜力。