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The miR-27a-calreticulin axis affects drug-induced immunogenic cell death in human colorectal cancer cells

机译:miR-27a-钙网蛋白轴影响人大肠癌细胞中药物诱导的免疫原性细胞死亡

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摘要

Immunogenic cell death (ICD) evoked by chemotherapeutic agents implies emission of selected damage-associated molecular patterns (DAMP) such as cell surface exposure of calreticulin, secretion of ATP and HMGB1. We sought to verify whether miR-27a is implicated in ICD, having demonstrated that it directly targets calreticulin. To this goal, we exposed colorectal cancer cell lines, genetically modified to express high or low miR-27a levels, to two bona fide ICD inducers (mitoxantrone and oxaliplatin). Low miR-27a-expressing cells displayed more ecto-calreticulin on the cell surface and increased ATP and HMGB1 secretion than high miR-27a-expressing ones in time-course experiments upon drug exposure. A calreticulin target protector counteracted the miR-27a effects while specific siRNAs mimicked them, confirming the results reported. In addition, miR-27a negatively influenced the PERK-mediated route and the late PI3K-dependent secretory step of the unfolded protein response to endoplasmic reticulum stress, suggesting that miR-27a modulates the entire ICD program. Interestingly, upon chemotherapeutic exposure, low miR-27a levels associated with an earlier and stronger induction of apoptosis and with morphological and molecular features of autophagy. Remarkably, in ex vivo setting, under the same chemotherapeutic induction, the conditioned media from high miR-27a-expressing cells impeded dendritic cell maturation while increased the secretion of specific cytokines (interleukin (IL)-4, IL-6, IL-8) and negatively influenced CD4+ T-cell interferon γ production and proliferation, all markers of a tumor immunoevasion strategy. In conclusion, we provide the first evidence that miR-27a impairs the cell response to drug-induced ICD through the regulatory axis with calreticulin.
机译:化疗药物诱发的免疫原性细胞死亡(ICD)意味着发射了与损伤相关的分子模式(DAMP),例如钙网蛋白的细胞表面暴露,ATP和HMGB1的分泌。我们已经证明miR-27a直接靶向钙网蛋白,从而试图验证其是否与ICD有关。为了实现这一目标,我们将经过基因修饰以表达高或低miR-27a水平的结直肠癌细胞系暴露于两种真正的ICD诱导剂(米托蒽醌和奥沙利铂)。在暴露于时间的实验中,低表达miR-27a的细胞比高表达miR-27a的细胞在细胞表面显示更多的外钙网蛋白,并增加ATP和HMGB1的分泌。钙网蛋白靶标保护剂抵消了miR-27a的作用,而特定的siRNA模仿了它们,从而证实了报道的结果。另外,miR-27a对PERK介导的途径和未表达的PI3K依赖性分泌步骤(对内质网应激的未折叠蛋白反应)产生负面影响,表明miR-27a调节了整个ICD程序。有趣的是,化学疗法暴露后,低miR-27a水平与更早更强的凋亡诱导以及自噬的形态和分子特征有关。值得注意的是,在离体情况下,在相同的化学诱导下,来自高表达miR-27a的细胞的条件培养基会阻止树突状细胞成熟,同时会增加特定细胞因子(白介素(IL)-4,IL-6,IL-8)的分泌)并负面影响CD4 + T细胞干扰素γ的产生和增殖,这是肿瘤免疫逃避策略的所有标志。总之,我们提供了第一个证据,证明miR-27a通过钙网蛋白通过调节轴损害细胞对药物诱导的ICD的反应。

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