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Inhibition of histone methyltransferase EZH2 for immune interception of colorectal cancer in Lynch syndrome
Charles M. Bowen, Fahriye Duzagac, Abel Martel-Martel, Laura Reyes-Uribe, Mahira Zaheer, Jacklyn Thompson, Nan Deng, Ria Sinha, Soham Mazumdar, Melissa W. Taggart, Abhinav K. Jain, Elena Tosti, Winfried Edelmann, Krishna M. Sinha, Eduardo Vilar
Charles M. Bowen, Fahriye Duzagac, Abel Martel-Martel, Laura Reyes-Uribe, Mahira Zaheer, Jacklyn Thompson, Nan Deng, Ria Sinha, Soham Mazumdar, Melissa W. Taggart, Abhinav K. Jain, Elena Tosti, Winfried Edelmann, Krishna M. Sinha, Eduardo Vilar
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Research Article Immunology Oncology

Inhibition of histone methyltransferase EZH2 for immune interception of colorectal cancer in Lynch syndrome

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Abstract

Colorectal precancers in Lynch syndrome (LS) exhibit a distinct immune profile, presenting unique opportunities for developing immune-interception strategies to prevent carcinogenesis. Epigenetic modulation by EZH2 of immune-related genes is implicated in the carcinogenesis of different cancer types, including colorectal cancer. This study utilizes a mouse model of LS and ex vivo colonic organoids to assess the effects of the EZH2 inhibitor GSK503 on immune regulatory pathways, tumorigenesis, and epigenetic reprogramming. Our findings revealed that GSK503 significantly increased CD4+ and CD8+ T cells in both splenocytes and colonic mucosa of treated mice compared with controls. Additionally, a preventive dose of GSK503 over 9 weeks notably reduced adenoma multiplicity, demonstrating its efficacy as a preventive modality. Single-cell RNA-Seq and molecular analyses showed activation of immune and apoptotic markers, along with a reduction in H3K27 methylation levels in colonic crypts. ChIP sequencing further revealed decreased levels of H3K27me3 and H3K4me1, while levels of the active enhancer marks H3K4me3 and H3K27Ac increased in treated mice. Collectively, these findings indicate that EZH2 inhibition enhances immune responses through epigenetic reprogramming in the genome of LS mice, establishing a promising framework for the clinical development of EZH2 inhibitors as a cancer prevention strategy for LS carriers.

Authors

Charles M. Bowen, Fahriye Duzagac, Abel Martel-Martel, Laura Reyes-Uribe, Mahira Zaheer, Jacklyn Thompson, Nan Deng, Ria Sinha, Soham Mazumdar, Melissa W. Taggart, Abhinav K. Jain, Elena Tosti, Winfried Edelmann, Krishna M. Sinha, Eduardo Vilar

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Figure 3

Inhibition of EZH2 promotes immune infiltration and activation in VCMsh2THu colonic mucosa.

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Inhibition of EZH2 promotes immune infiltration and activation in VCMsh2...
(A) Western blot analysis was performed in the lysates from colonic mucosal stripping of VCMsh2THu mice (N = 3/group): control and GSK treatment with quantification shown in bar graph below blots. Histone H3 modification was assessed using anti-H3K27me3 (P = 0.0003), anti-H3K9me3 (P = 0.0091), anti-H3K36me3 (P = 0.6534), and anti-H3K4me3 (P = 0.0005) antibodies with histone H3 as loading control. Stemness and proliferation were measured via anti-LGR5 (P = 0.3583), anti-EPCAM (P = 0.0001), anti-GATA3 (P = 0.2559), and Ki67 antibodies (P = 0.0572). Anti-EZH2 (P = 0.3091) was probed to assess efficacy of GSK503 activity in the colonic mucosa. The loading control for each nonhistone blot was β-actin. Quantification was performed using ImageJ, and density was normalized to control samples for each probe. (B) IHC staining of colonic tissue from VCMsh2THu mice. Images shown are a single field of view (original magnification, ×20). Scale bar: 200 μm. (C) A representative image of sequential immunofluorescence using Lunaphore COMET platform from VCMsh2THu colonic mucosa (N = 3/group) stained with DAPI (red), E-cadherin (blue), CD8 (green), Ki67 (yellow), and CD163 (white) (original magnification, ×20). (D) Quantification of Comet data shown in C. (E) EZH2 knockdown in mouse organoids phenocopied similar results obtained with GSK503 inhibition of EZH2. Quantitative gene expression analysis results demonstrated significant changes in gene expression for Cdx2 (P = 0.0026), Dpp4 (P = 0.022), Epcam (P = 0.0003), Lgr5 (P = 0.001), and Muc2 (P = 0.0005). The mRNA levels of Krt20 and Vill were not significant. The graphed data are expressed as mean ± SEM. For all graphs, Student’s t test was used to determine significance. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

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