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Molecular profiling identifies distinct subtypes across TP53 mutant tumors
Xin Chen, Tianqi Liu, Jianqi Wu, Chen Zhu, Gefei Guan, Cunyi Zou, Qing Guo, Xiaolin Ren, Chen Li, Peng Cheng, Wen Cheng, Anhua Wu
Xin Chen, Tianqi Liu, Jianqi Wu, Chen Zhu, Gefei Guan, Cunyi Zou, Qing Guo, Xiaolin Ren, Chen Li, Peng Cheng, Wen Cheng, Anhua Wu
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Research Article Genetics Immunology

Molecular profiling identifies distinct subtypes across TP53 mutant tumors

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Abstract

Tumor protein 53 mutation (TP53mut) is one of the most important driver events facilitating tumorigenesis, which could induce a series of chain reactions to promote tumor malignant transformation. However, the malignancy progression patterns under TP53 mutation remain less known. Clarifying the molecular landscapes of TP53mut tumors will help us understand the process of tumor development and aid precise treatment. Here, we distilled genetic and epigenetic features altered in TP53mut cancers for cluster-of-clusters analysis. Using integrated classification, we derived 5 different subtypes of TP53mut patients. These subtypes have distinct features in genomic alteration, clinical relevance, microenvironment dysregulation, and potential therapeutics. Among the 5 subtypes, COCA3 was identified as the subtype with worst prognosis, causing an immunosuppressive microenvironment and immunotherapeutic resistance. Further drug efficacy research highlighted olaparib as the most promising therapeutic agents for COCA3 tumors. Importantly, the therapeutic efficacy of olaparib in COCA3 and immunotherapy in non-COCA3 tumors was validated via in vivo experimentation. Our study explored the important molecular events and developed a subtype classification system with distinct targeted therapy strategies for different subtypes of TP53mut tumors. These multiomics classification systems provide a valuable resource that significantly expands the knowledge of TP53mut tumors and may eventually benefit in clinical practice.

Authors

Xin Chen, Tianqi Liu, Jianqi Wu, Chen Zhu, Gefei Guan, Cunyi Zou, Qing Guo, Xiaolin Ren, Chen Li, Peng Cheng, Wen Cheng, Anhua Wu

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Figure 3

COCA3 subtype conferred an immunosuppressive microenvironment.

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COCA3 subtype conferred an immunosuppressive microenvironment.
(A) The 7...
(A) The 7 steps of TIP to identify dynamic changes in tumor killing between COCA3 and other 4 COCA subtypes (Student’s t test for steps 5 and 7, and Wilcoxon rank-sum test for other steps). (B) GSEA revealed that COCA3 negatively correlated with leukocyte degranulation (permutation test). (C) The inhibitory score estimated by ssGSEA was elevated in COCA3 subtype (Wilcoxon rank-sum test). (D) The identified inhibitory patients highly enriched in COCA3 subtype (χ2 test). (E) Three immune cells significantly enriched in a COCA3 subtype from quanTIseq and xCell algorithms intersected. (F) The contents of M1 macrophage minus M2 were decreased in COCA3 subtype (Wilcoxon rank-sum test). *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

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