Dipartimento di Scienze Farmaceutiche, Università degli Studi di Salerno, 84034, Fisciano, Salerno, Italy.
Dipartimento di Medicina Molecolare e Biotecnologie Mediche, Università degli Studi di Napoli Federico II, 80131, Naples, Italy.
Cell Biol Toxicol. 2016 Aug;32(4):285-303. doi: 10.1007/s10565-016-9335-z. Epub 2016 May 27.
MicroRNAs (miRs) regulate gene expression to support important physiological functions. Significant evidences suggest that miRs play a crucial role in many pathological events and in the cell response to various stresses.
With the aim to identify new miRs induced by perturbation of intracellular calcium homeostasis, we analysed miR expression profiles of thapsigargin (TG)-treated cells by microarray. In order to identify miR-663a-regulated genes, we evaluated proteomic changes in miR-663a-overexpressing cells by two-dimensional differential in-gel electrophoresis coupled to mass spectrometric identification of the differentially represented proteins. Microarray and proteomic analyses were supported by biochemical validation.
Results of microarray revealed 24 differentially expressed miRs; among them, miR-663a turned out to be by ER stress and under the control of the PERK pathway of the unfolded protein response. Proteomic analysis revealed that PLOD3, which is the gene encoding for collagen-modifying lysyl hydroxylase 3 (LH3), is regulated by miR-663a. Luciferase reporter assays demonstrated that miR-663a indeed reduces LH3 expression by targeting to 3'-UTR of PLOD3 mRNA. Interestingly, miR-663a inhibition of LH3 expression generates reduced extracellular accumulation of type IV collagen, thus suggesting the involvement of miR-663a in modulating collagen 4 secretion in physiological conditions and in response to ER stress.
The finding of the ER stress-induced PERK-miR-663a pathway may have important implications in the understanding of the molecular mechanisms underlying the function of this miR in normal and/or pathological conditions.
微小 RNA(miRs)通过调节基因表达来支持重要的生理功能。有大量证据表明,miRs 在许多病理事件以及细胞对各种应激的反应中发挥着关键作用。
为了鉴定因细胞内钙稳态紊乱而诱导的新的 miRs,我们通过微阵列分析了他普西加林(TG)处理的细胞的 miR 表达谱。为了鉴定 miR-663a 调节的基因,我们通过二维差异凝胶电泳结合质谱鉴定差异表达的蛋白质来评估 miR-663a 过表达细胞的蛋白质组变化。微阵列和蛋白质组学分析得到了生化验证的支持。
微阵列的结果显示 24 个差异表达的 miRs;其中,miR-663a 是由内质网应激引起的,并且受未折叠蛋白反应 PERK 途径的控制。蛋白质组学分析显示,编码胶原修饰赖氨酰羟化酶 3(LH3)的基因 PLOD3 受 miR-663a 调控。荧光素酶报告基因检测表明,miR-663a 通过靶向 PLOD3 mRNA 的 3'-UTR 确实降低了 LH3 的表达。有趣的是,miR-663a 抑制 LH3 的表达会减少 IV 型胶原的细胞外积累,这表明 miR-663a 可能参与调节胶原 4 在生理条件下和内质网应激时的分泌。
内质网应激诱导的 PERK-miR-663a 途径的发现可能对理解该 miR 在正常和/或病理条件下的功能的分子机制具有重要意义。