首页> 美国卫生研究院文献>Cancer Science >Concomitant overexpression of mir‐182‐5p and mir‐182‐3p raises the possibility of IL‐17–producing Treg formation in breast cancer by targeting CD3d ITK FOXO1 and NFATs: A meta‐analysis and experimental study
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Concomitant overexpression of mir‐182‐5p and mir‐182‐3p raises the possibility of IL‐17–producing Treg formation in breast cancer by targeting CD3d ITK FOXO1 and NFATs: A meta‐analysis and experimental study

机译:CiR-182-5P和MiR-182-3P的伴随过表达引发了通过靶向CD3DITKFOXO1和NFATS在乳腺癌中产生IL-17的Treg形成的可能性:Meta分析和实验研究

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摘要

T cells are polarized toward regulatory T cells (Tregs) in tumor microenvironment by the shuttling of microRNAs that target T cell–activating signaling pathways. We evaluated the expression of the miR‐182 cluster (miR‐96, 182, and 183) in peripheral blood mononuclear cells (PBMCs) of patients with breast cancer (BC), and T cell polarization by the expression of FOXO1, NFATs, ITK, TCR/CD3 complex, and IL‐2/IL‐2RA. Twenty‐six microRNAs overexpressed in tumor tissues and sera of these patients were extracted by a meta‐analysis. Then, the expression of the miR‐182 cluster was investigated in PBMCs and sera of these patients and correlated with their targets in PBMCs. Finally, miR‐182 was cloned into Jurkat cells to evaluate its effects on T cell polarization. FOXO1, CD3d, ITK, NFATc3, NFATc4, and IL‐2RA were targeted by miR‐182, due to which their expression decreased in PBMCs of patients. Although IL‐6, IL‐17, and TGF‐β increased after miR‐182 transduction, IL‐2 dramatically decreased. We revealed CD4+FOXP3+ T cell differentiation in the miR‐182–transduced group. Although miR‐182 has inhibitory effects on T cells by the inhibition of FOXO1, TCR/CD3 complex, NFATs, and IL‐2/IL‐2RA signaling pathways, it increases FOXP3, TGF‐β, and IL‐17 expression to possibly drive T cell deviation toward the transitional state of IL‐17–producing Tregs and Treg formation in the end.
机译:通过穿梭通过靶向靶向靶向T细胞激活信号传导途径的MicroRNA,T细胞偏振朝向肿瘤微环境中的调节T细胞(Tregs)。通过Foxo1,NFAT,ITK的表达,我们评估了MIR-182簇(MIR-96,182和183)的外周血单核细胞(PBMC)和T细胞极化的表达,TCR / CD3复合物,和IL-2 / IL-2RA。通过META分析提取二十六种肿瘤组织和这些患者血清中过表达的微小瘤。然后,在这些患者的PBMC和血清中研究了MIR-182簇的表达,并与PBMC中的靶标相关。最后,MiR-182被克隆到Jurkat细胞中以评估其对T细胞极化的影响。 FOXO1,CD3D,ITK,NFATC3,NFATC4和IL-2RA由miR-182靶向,其表达在患者的PBMC中降低。虽然MiR-182转导后IL-6,IL-17和TGF-β增加,但IL-2显着降低。我们揭示了MiR-182转导组中的CD4 + Foxp3 + T细胞分化。虽然miR-182通过抑制FOXO1,TCR / CD3复合物,NFAT和IL-2 / IL-2RS信号传导途径对T细胞具有抑制作用,但它增加了Foxp3,TGF-β和IL-17表达可能驱动T细胞偏向于IL-17的过渡状态,在末端产生il-17的Tregs和Treg形成。

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