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Molecular Mechanisms of Bortezomib Action: Novel Evidence for the miRNA–mRNA Interaction Involvement

机译:硼替佐米作用的分子机制:miRNA–mRNA相互作用参与的新证据。

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摘要

Bortezomib is an anti-tumor agent, which inhibits 26S proteasome degrading ubiquitinated proteins. While apoptotic transcription-associated activation in response to bortezomib has been suggested, mechanisms related to its influence on post-transcriptional gene silencing mediated regulation by non-coding RNAs remain not fully elucidated. In the present study, we examined changes in global gene and miRNA expression and analyzed the identified miRNA–mRNA interactions after bortezomib exposure in human neuroblastoma cells to define pathways affected by this agent in this type of cells. Cell viability assays were performed to assess cytotoxicity of bortezomib. Global gene and miRNA expression profiles of neuroblastoma cells after 24-h incubation with bortezomib were determined using genome-wide RNA and miRNA microarray technology. Obtained results were then confirmed by qRT-PCR and Western blot. Further bioinformatical analysis was performed to identify affected biological processes and pathways. In total, 719 genes and 28 miRNAs were downregulated, and 319 genes and 61 miRNAs were upregulated in neuroblastoma cells treated with bortezomib. Possible interactions between dysregulated miRNA/mRNA, which could be linked to bortezomib-induced neurotoxicity, affect neurogenesis, cellular calcium transport, and neuron death. Bortezomib might exert toxic effects on neuroblastoma cells and regulate miRNA–mRNA interactions influencing vital cellular functions. Further studies on the role of specific miRNA–mRNA interactions are needed to elucidate mechanisms of bortezomib action.
机译:硼替佐米是一种抗肿瘤药,可抑制26S蛋白酶体降解泛素化的蛋白质。尽管已经提出了响应硼替佐米的凋亡转录相关活化,但仍未完全阐明与它对非编码RNA对转录后基因沉默介导的调控的影响有关的机制。在本研究中,我们检查了人类成神经细胞瘤细胞中硼替佐米暴露后总体基因和miRNA表达的变化,并分析了已确定的miRNA-mRNA相互作用,以定义此类型细胞中受此剂影响的途径。进行细胞活力测定以评估硼替佐米的细胞毒性。使用全基因组RNA和miRNA微阵列技术确定了与硼替佐米孵育24小时后成神经细胞瘤细胞的全局基因和miRNA表达谱。然后通过qRT-PCR和Western印迹证实获得的结果。进行了进一步的生物信息学分析,以确定受影响的生物学过程和途径。在用硼替佐米治疗的神经母细胞瘤细胞中,总共下调了719个基因和28个miRNA,并且上调了319个基因和61个miRNA。 miRNA / mRNA失调之间可能发生相互作用,这可能与硼替佐米引起的神经毒性相关,影响神经发生,细胞钙转运和神经元死亡。硼替佐米可能会对神经母细胞瘤细胞产生毒性作用,并调节影响重要细胞功能的miRNA-mRNA相互作用。为了阐明硼替佐米作用的机制,需要进一步研究特定的miRNA-mRNA相互作用的作用。

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