SARDH in the 1-C metabolism sculpts the T-cell fate and serves as a potential cancer therapeutic target.

IF 19.8 1区 医学 Q1 IMMUNOLOGY
Wen Si, Sijin Cheng, Haiyin He, Yu Zhang, Yuhui Miao, Dingcheng Yi, Mengjiao Ni, Anqiang Wang, Hongtao Fan, Yufei Bo, Chang Liu, Zhaode Bu, Linnan Zhu, Zemin Zhang
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Abstract

T-cell metabolism plays a pivotal role in defining T-cell functional states. Through analysis of a comprehensive pancancer single-cell transcriptional atlas, we identified SARDH, an enzyme involved in one-carbon (1-C) metabolism, as a potential T-cell metabolic checkpoint. SARDH significantly impacts T-cell fate and function, leading to impaired tumor control efficacy. Knocking down SARDH resulted in sarcosine accumulation and reduced consumption of S-adenosylmethionine (SAM), a critical methyl donor for epigenetic modulation, likely due to the shift in glycine-to-sarcosine homeostasis. Deletion of SARDH increased H3K79me2 modification at NF-κB-activating genes, thereby augmenting NF-κB signaling and T-cell function. Additionally, we observed transcriptional dysregulation of 1-C metabolism within tumors across various cancer types, which was often accompanied by increased sarcosine levels. Sarcosine was found to induce SARDH upregulation, suggesting a feedback mechanism for metabolic homeostasis in T cells within tumors. These findings underscore the potential effects and mechanism of targeting 1-C metabolism, particularly SARDH, as an avenue for cancer therapy.

1-C代谢中的SARDH塑造了t细胞的命运,并作为潜在的癌症治疗靶点。
t细胞代谢在确定t细胞功能状态中起着关键作用。通过对全面的胰腺癌单细胞转录图谱的分析,我们确定了SARDH,一种参与一碳(1-C)代谢的酶,作为潜在的t细胞代谢检查点。SARDH显著影响t细胞命运和功能,导致肿瘤控制效果受损。敲除SARDH导致肌氨酸积累和s -腺苷蛋氨酸(SAM)的消耗减少,SAM是表观遗传调节的关键甲基供体,可能是由于甘氨酸到肌氨酸稳态的转变。SARDH的缺失增加了NF-κB激活基因的H3K79me2修饰,从而增强了NF-κB信号传导和t细胞功能。此外,我们观察到各种癌症类型的肿瘤中1-C代谢的转录失调,这通常伴随着肌氨酸水平的增加。研究发现,肌氨酸可诱导SARDH上调,提示肿瘤内T细胞代谢稳态存在反馈机制。这些发现强调了靶向1-C代谢,特别是SARDH作为癌症治疗途径的潜在作用和机制。
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来源期刊
CiteScore
31.20
自引率
1.20%
发文量
903
审稿时长
1 months
期刊介绍: Cellular & Molecular Immunology, a monthly journal from the Chinese Society of Immunology and the University of Science and Technology of China, serves as a comprehensive platform covering both basic immunology research and clinical applications. The journal publishes a variety of article types, including Articles, Review Articles, Mini Reviews, and Short Communications, focusing on diverse aspects of cellular and molecular immunology.
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