Srivastava Sanjeev K, Bhardwaj Arun, Arora Sumit, Tyagi Nikhil, Singh Seema, Andrews Joel, McClellan Steve, Wang Bin, Singh Ajay P
Department of Oncologic Sciences, Mitchell Cancer Institute, University of South Alabama, 1660 Springhill Avenue, Mobile, AL 36604-1405, USA.
Department of Mathematics and Statistics, University of South Alabama, Mobile, AL, USA.
Br J Cancer. 2015 Aug 11;113(4):660-8. doi: 10.1038/bjc.2015.252. Epub 2015 Aug 6.
Previously, miR-345 was identified as one of the most significantly downregulated microRNAs in pancreatic cancer (PC); however, its functional significance remained unexplored.
miR-345 was overexpressed in PC cells by stable transfection, and its effect on growth, apoptosis and mitochondrial-membrane potential was examined by WST-1, Hoechst-33342/Annexin-V, and JC-1 staining, respectively. Gene expression was examined by quantitative reverse-transcription-PCR and/or immunoblotting, and subcellular fractions prepared and caspase-3/7 activity determined by commercially available kits. miR-345 target validation was performed by mutational analysis and luciferase-reporter assay.
miR-345 is significantly downregulated in PC tissues and cell lines relative to normal pancreatic cells, and its expression decreases gradually in PC progression model cell lines. Forced expression of miR-345 results in reduced growth of PC cells because of the induction of apoptosis, accompanied by a loss in mitochondrial membrane potential, cytochrome-c release, caspases-3/7 activation, and PARP-1 cleavage, as well as mitochondrial-to-nuclear translocation of apoptosis-inducing factor. These effects could be reversed by the treatment of miR-345-overexpressing PC cells with anti-miR-345 oligonucleotides. BCL2 was characterised as a novel target of miR-345 and its forced-expression abrogated the effects of miR-345 in PC cells.
miR-345 downregulation confers apoptosis resistance to PC cells, and its restoration could be exploited for therapeutic benefit.
此前,miR - 345被鉴定为胰腺癌(PC)中下调最为显著的微小RNA之一;然而,其功能意义仍未得到探索。
通过稳定转染在PC细胞中过表达miR - 345,分别采用WST - 1、Hoechst - 33342/Annexin - V和JC - 1染色检测其对细胞生长、凋亡和线粒体膜电位的影响。通过定量逆转录 - PCR和/或免疫印迹检测基因表达,制备亚细胞组分并用市售试剂盒测定caspase - 3/7活性。通过突变分析和荧光素酶报告基因检测进行miR - 345靶标验证。
与正常胰腺细胞相比,miR - 345在PC组织和细胞系中显著下调,并且在PC进展模型细胞系中其表达逐渐降低。miR - 345的强制表达导致PC细胞生长受抑制,这是由于细胞凋亡的诱导,同时伴有线粒体膜电位丧失、细胞色素c释放、caspases - 3/7激活、PARP - 1裂解以及凋亡诱导因子从线粒体向细胞核的转位。用抗miR - 345寡核苷酸处理过表达miR - 345的PC细胞可逆转这些效应。BCL2被鉴定为miR - 345的一个新靶标,其强制表达可消除miR - 345对PC细胞的影响。
miR - 345下调赋予PC细胞抗凋亡能力,恢复其表达可能具有治疗益处。