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Endoplasmic reticulum stress‐induced exosomal miR‐27a‐3p promotes immune escape in breast cancer via regulating PD‐L1 expression in macrophages

机译:内质网胁迫诱导的外泌体miR-27a-3p通过调节巨噬细胞的PD-L1表达来促进乳腺癌免疫逃逸

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摘要

Immune escape of breast cancer cells contributes to breast cancer pathogenesis. Tumour microenvironment stresses that disrupt protein homeostasis can produce endoplasmic reticulum (ER) stress. The miRNA‐mediated translational repression of mRNAs has been extensively studied in regulating immune escape and ER stress in human cancers. In this study, we identified a novel microRNA (miR)‐27a‐3p and investigated its mechanistic role in promoting immune evasion. The binding affinity between miR‐27a‐3p and MAGI2 was predicted using bioinformatic analysis and verified by dual‐luciferase reporter assay. Ectopic expression and inhibition of miR‐27a‐3p in breast cancer cells were achieved by transduction with mimics and inhibitors. Besides, artificial modulation of MAGI2 and PTEN was done to explore their function in ER stress and immune escape of cancer cells. Of note, exosomes were derived from cancer cells and co‐cultured with macrophages for mechanistic studies. The experimental data suggested that ER stress biomarkers including GRP78, PERK, ATF6, IRE1α and PD‐L1 were overexpressed in breast cancer tissues relative to paracancerous tissues. Endoplasmic reticulum stress promoted exosome secretion and elevated exosomal miR‐27a‐3p expression. Elevation of miR‐27a‐3p and PD‐L1 levels in macrophages was observed in response to exosomes‐overexpressing miR‐27a‐3p in vivo and in vitro. miR‐27a‐3p could target and negatively regulate MAGI2, while MAGI2 down‐regulated PD‐L1 by up‐regulating PTEN to inactivate PI3K/AKT signalling pathway. Less CD4+, CD8+ T cells and IL‐2, and T cells apoptosis were observed in response to co‐culture of macrophages and CD3+ T cells. Conjointly, exosomal miR‐27a‐3p promotes immune evasion by up‐regulating PD‐L1 via MAGI2/PTEN/PI3K axis in breast cancer.
机译:乳腺癌细胞的免疫逃生有助于乳腺癌发病机制。肿瘤微环境应力破坏蛋白质稳态可以产生内质网(ER)应激。 MiRNA介导的MRNA的平移抑制已被广泛研究,用于调节人类癌症的免疫逃逸和ER应激。在这项研究中,我们鉴定了一种新的MicroRNA(MIR)-27A-3P,并研究了在促进免疫逃避方面的机制作用。使用生物信息分析预测MIR-27A-3P和MAGI2之间的结合亲和力,并通过双荧光素酶报告结果进行验证。通过用模拟和抑制剂进行转导实现乳腺癌细胞中miR-27a-3p的异位表达和抑制。此外,Magi2和PTEN的人工调节是为了探讨其在ER应激和癌细胞免疫逃生中的功能。值得注意的是,外泌体源自癌细胞并与巨噬细胞共同培养进行机械研究。实验数据表明,ER应力生物标志物,包括GRP78,Perk,ATF6,IRE1α和PD-L1相对于副癌组织在乳腺癌组织中过表达。内质网胁迫促进外出分泌和升高的外泌体miR-27a-3p表达。响应于体内和体外的外泌体过表达MIR-27A-3P,观察到MIR-27A-3P和巨噬细胞PD-L1水平的升高。 miR-27a-3p可以靶向和消极调节magi2,而Magi2下调PD-L1通过向上调节PTEN以灭活PI3K / AKT信号通路。响应于巨噬细胞和CD3 + T细胞的共培养,观察到较少的CD4 +,CD8 + T细胞和IL-2和T细胞凋亡。结合,外泌体miR-27a-3p通过在乳腺癌中通过MAGI2 / PTEN / PI3K轴通过Magi2 / PTEN / PI3K轴促进免疫疏水。

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