Wang Zhangding, Wang Qiang, Chen Chen, Zhao Xiaoya, Wang Honggang, Xu Lei, Fu Yao, Huang Guang, Li Mengmeng, Xu Jiawen, Zhang Qianyi, Wang Bo, Xu Guifang, Wang Lei, Zou Xiaoping, Wang Shouyu
Department of Gastroenterology, Nanjing Drum Tower Hospital, The Affiliated Hospital of Nanjing University Medical School, Nanjing, Jiangsu Province, People's Republic of China.
Department of Hepatobiliary Surgery, First Affiliated Hospital of Anhui Medical University, Hefei, Anhui Province, People's Republic of China.
Gut. 2023 Dec 7;73(1):63-77. doi: 10.1136/gutjnl-2022-328408.
Early gastric cardia adenocarcinoma (EGCA) is a highly heterogeneous cancer, and the understanding of its classification and malignant progression is limited. This study explored the cellular and molecular heterogeneity in EGCA using single-cell RNA sequencing (scRNA-seq).
scRNA-seq was conducted on 95 551 cells from endoscopic biopsies of low-grade intraepithelial neoplasia, well/moderately/poorly differentiated EGCA and their paired adjacent nonmalignant biopsy samples. Large-scale clinical samples and functional experiments were employed.
Integrative analysis of epithelial cells revealed that chief cells, parietal cells and enteroendocrine cells were rarely detected in the malignant epithelial subpopulation, whereas gland and pit mucous cells and AQP5 stem cells were predominant during malignant progression. Pseudotime and functional enrichment analyses showed that the WNT and NF-κB signalling pathways were activated during the transition. Cluster analysis of heterogeneous malignant cells revealed that NNMT-mediated nicotinamide metabolism was enriched in gastric mucin phenotype cell population, which was associated with tumour initiation and inflammation-induced angiogenesis. Furthermore, the expression level of NNMT was gradually increased during the malignant progression and associated with poor prognosis in cardia adenocarcinoma. Mechanistically, NNMT catalysed the conversion of nicotinamide to 1-methyl nicotinamide via depleting S-adenosyl methionine, which led to a reduction in H3K27 trimethylation (H3K27me3) and then activated the WNT signalling pathway to maintain the stemness of AQP5 stem cells during EGCA malignant progression.
Our study extends the understanding of the heterogeneity of EGCA and identifies a functional NNMT/AQP5 population that may drive malignant progression in EGCA and could be used for early diagnosis and therapy.
早期贲门腺癌(EGCA)是一种高度异质性的癌症,对其分类和恶性进展的了解有限。本研究使用单细胞RNA测序(scRNA-seq)探索EGCA中的细胞和分子异质性。
对来自低级别上皮内瘤变、高/中/低分化EGCA的内镜活检组织及其配对的相邻非恶性活检样本中的95551个细胞进行scRNA-seq。采用了大规模临床样本和功能实验。
上皮细胞的综合分析显示,在恶性上皮亚群中很少检测到主细胞、壁细胞和肠内分泌细胞,而腺体和隐窝黏液细胞以及水通道蛋白5(AQP5)干细胞在恶性进展过程中占主导地位。伪时间和功能富集分析表明,WNT和NF-κB信号通路在转变过程中被激活。对异质性恶性细胞的聚类分析显示,NNMT介导的烟酰胺代谢在胃黏液表型细胞群体中富集,这与肿瘤起始和炎症诱导的血管生成有关。此外,NNMT的表达水平在恶性进展过程中逐渐升高,并且与贲门腺癌的不良预后相关。机制上,NNMT通过消耗S-腺苷甲硫氨酸催化烟酰胺转化为1-甲基烟酰胺,这导致H3K27三甲基化(H3K27me3)减少,进而激活WNT信号通路,以维持EGCA恶性进展过程中AQP5干细胞的干性。
我们的研究扩展了对EGCA异质性的理解,并鉴定出一个功能性的NNMT/AQP5细胞群体,其可能驱动EGCA的恶性进展,可用于早期诊断和治疗。