C1Q+ TPP1+ macrophages promote colon cancer progression through SETD8-driven p53 methylation

癌症研究 生物 结直肠癌 炎症 转移 癌症 转录因子 肿瘤进展 癌症干细胞 干细胞 免疫学 细胞生物学 基因 遗传学
作者
Veronica Veschi,Francesco Verona,Sebastiano Di Bella,Alice Turdo,Miriam Gaggianesi,Simone Di Franco,Laura Rosa Mangiapane,Chiara Modica,Melania Lo Iacono,Paola Bianca,Ornella Roberta Brancato,Caterina D'Accardo,Gaetana Porcelli,Vincenzo Luca Lentini,Isabella Sperduti,Elisabetta Sciacca,Peter Fitzgerald,David Lopez Perez,Pierre Martine,Kate Brown
出处
期刊:Molecular Cancer [BioMed Central]
卷期号:24 (1): 102-102 被引量:7
标识
DOI:10.1186/s12943-025-02293-y
摘要

In many tumors, the tumor suppressor TP53 is not mutated, but functionally inactivated. However, mechanisms underlying p53 functional inactivation remain poorly understood. SETD8 is the sole enzyme known to mono-methylate p53 on lysine 382 (p53K382me1), resulting in the inhibition of its pro-apoptotic and growth-arresting functions. We analyzed SETD8 and p53K382me1 expression in clinical colorectal cancer (CRC) and inflammatory bowel disease (IBD) samples. Histopathological examinations, RNA sequencing, ChIP assay and preclinical in vivo CRC models, were used to assess the functional role of p53 inactivation in tumor cells and immune cell infiltration. By integrating bulk RNAseq and scRNAseq approaches in CRC patients, SETD8-mediated p53 regulation resulted the most significantly enriched pathway. p53K382me1 expression was confined to colorectal cancer stem cells (CR-CSCs) and C1Q+ TPP1+ tumor-associated macrophages (TAMs) in CRC patient tissues, with high levels predicting decreased survival probability. TAMs promote p53 functional inactivation in CR-CSCs through IL-6 and MCP-1 secretion and increased levels of CEBPD, which directly binds SETD8 promoter thus enhancing its transcription. The direct binding of C1Q present on macrophages and C1Q receptor (C1QR) present on cancer stem cells mediates the cross-talk between the two cell compartments. As monotherapy, SETD8 genetic and pharmacological (UNC0379) inhibition affects the tumor growth and metastasis formation in CRC mouse avatars, with enhanced effects observed when combined with IL-6 receptor targeting. These findings suggest that p53K382me1 may be an early step in tumor initiation, especially in inflammation-induced CRC, and could serve as a functional biomarker and therapeutic target in adjuvant setting for advanced CRCs.
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