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Epigenetic control of Foxp3 in intratumoral T-cells regulates growth of hepatocellular carcinoma

机译:肿瘤内T细胞中Foxp3的表观遗传调控调节肝细胞癌的生长

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摘要

Capability of tumor cells to impede immune response are largely associated with their interaction and regulation of CD4+CD25+ forkhead box transcription factor (Foxp)3+ regulatory T (Treg) cells, which suppress cytotoxic T cell-mediated immunity in the tumor microenvironment. Foxp3 level is critical for development and phenotypic maintenance of Treg, and is regulated by transcriptional control and epigenetic modification. Here, we showed that higher percentage of intratumoral Treg cells was positively correlated with lower Foxp3 promoter methylation in hepatocellular carcinoma (HCC), and both of them were associated with higher tumor grade, larger tumors, and poor prognosis of the patients. We used an adeno-associated virus (AAV) carrying either DNA (cytosine-5)-methyltransferase 1 (DNMT1) or shDNMT1 under a CD4 promoter (AAV-pCD4-DNMT1, AAV-pCD4-shDNMT1) to successfully target T-cells and alter the levels of DNMT1. Intratumoral injection of AAV- pCD4-DNMT1 significantly reduced tumor growth in mice, while intratumoral injection of AAV- pCD4-DNMT1 significantly induced tumor growth, compared to injection of control AAV. Finally, the effects of altering DNMT1 levels in T-cells seemed to affect tumor growth through alteration of methylation status of Foxp3 on promoter and CpG regions. Together, these data suggest that epigenetic control of Foxp3 in intratumoral T cells regulates growth of HCC.
机译:肿瘤细胞阻止免疫反应的能力在很大程度上与它们的相互作用和CD4 + CD25 +叉头盒转录因子(Foxp)3+调节性T(Treg)细胞的调节有关,后者可抑制肿瘤微环境中细胞毒性T细胞介导的免疫力。 Foxp3水平对于Treg的发育和表型维持至关重要,并受转录控制和表观遗传修饰的调控。在这里,我们显示,肝细胞癌(HCC)中较高的肿瘤内Treg细胞百分比与较低的Foxp3启动子甲基化呈正相关,并且二者均与较高的肿瘤等级,较大的肿瘤和患者的预后不良相关。我们使用在CD4启动子(AAV-pCD4-DNMT1,AAV-pCD4-shDNMT1)下携带DNA(胞嘧啶5)-甲基转移酶1(DNMT1)或shDNMT1的腺相关病毒(AAV)成功靶向T细胞和更改DNMT1的级别。与注射对照AAV相比,瘤内注射AAV-pCD4-DNMT1显着降低了小鼠的肿瘤生长,而瘤内注射AAV-pCD4-DNMT1显着诱导了肿瘤生长。最后,改变T细胞中DNMT1水平的作用似乎通过改变Foxp3在启动子和CpG区域的甲基化状态而影响肿瘤的生长。在一起,这些数据表明肿瘤内T细胞中Foxp3的表观遗传控制调节HCC的生长。

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