Tangeman Larissa, Wyatt Christopher N, Brown Thomas L
Program in Microbiology and Immunology and Department of Neuroscience, Cell Biology and Physiology, Wright State University Boonshoft School of Medicine, Dayton, Ohio 45435, USA.
J RNAi Gene Silencing. 2012;8:470-8. Epub 2012 Oct 4.
AMP-activated protein kinase (AMPK) is a master metabolic regulator that responds to the AMP: ATP ratio and promotes ATP production when the cell is low on energy. There are two isoforms of the catalytic alpha subunit, AMPKα1 and AMPKα2. Here, we describe the production of a small interfering RNA (siRNA) and a short hairpin RNA (shRNA) targeting both catalytic isoforms of AMPK in human, mouse, and rat. Multiple loop sequences were tested to generate the most effective shRNA. The shRNA causes significant knockdown of both isoforms of AMPKα in mouse and human cells. The shRNA effectively knocked down AMPKα1 and AMPKα2 protein levels, compared to a five basepair mismatch-control shRNA in mouse fibroblast NIH3T3 cells and significantly knocked down AMPKα1 (63%) and AMPKα2 (72%) levels compared to control in human embryonic kidney cells, HEK293s. The shRNA also causes a significant reduction in AMPK activity, measured as phosphorylation of acetyl-CoA carboxylase (ACC), a direct phosphorylation target. While the protein levels of total ACC remained the same between the AMPKα1and α2 shRNA and control shRNA-treated cells, there was a 41% reduction in phospho-ACC protein levels. The generation of this AMPKα1and α2 shRNA can be used to stably knock down protein levels and activity of both catalytic isoforms of AMPK in different species to assess function.
AMP激活的蛋白激酶(AMPK)是一种主要的代谢调节因子,可对AMP:ATP比值作出反应,并在细胞能量不足时促进ATP生成。催化性α亚基有两种亚型,即AMPKα1和AMPKα2。在此,我们描述了针对人、小鼠和大鼠中AMPK两种催化亚型的小干扰RNA(siRNA)和短发夹RNA(shRNA)的制备。测试了多个环序列以生成最有效的shRNA。该shRNA可显著降低小鼠和人细胞中AMPKα的两种亚型。与小鼠成纤维细胞NIH3T3细胞中的五碱基错配对照shRNA相比,该shRNA有效降低了AMPKα1和AMPKα2的蛋白水平,并且与人类胚胎肾细胞HEK293s中的对照相比,显著降低了AMPKα1(63%)和AMPKα2(72%)的水平。该shRNA还导致AMPK活性显著降低,以乙酰辅酶A羧化酶(ACC)的磷酸化来衡量,ACC是直接的磷酸化靶点。虽然在AMPKα1和α2 shRNA处理的细胞与对照shRNA处理的细胞之间,总ACC的蛋白水平保持不变,但磷酸化ACC的蛋白水平降低了41%。这种AMPKα1和α2 shRNA的产生可用于稳定降低不同物种中AMPK两种催化亚型的蛋白水平和活性,以评估其功能。