Wang Xushan, Mader Mary M, Toth John E, Yu Xiaohong, Jin Najia, Campbell Robert M, Smallwood Jeffrey K, Christe Michael E, Chatterjee Arindam, Goodson Theodore, Vlahos Chris J, Matter William F, Bloem Laura J
Cardiovascular Discovery Research, Eli Lilly and Company, Indianapolis, Indiana 46285, USA.
J Biol Chem. 2005 May 13;280(19):19298-305. doi: 10.1074/jbc.M413059200. Epub 2005 Feb 28.
Mixed lineage kinase 7 (MLK7) is a mitogen-activated protein kinase kinase kinase (MAPKKK) that activates the pro-apoptotic signaling pathways p38 and JNK. A library of potential kinase inhibitors was screened, and a series of dihydropyrrolopyrazole quinolines was identified as highly potent inhibitors of MLK7 in vitro catalytic activity. Of this series, an aryl-substituted dihydropyrrolopyrazole quinoline (DHP-2) demonstrated an IC50 of 70 nM for inhibition of pJNK formation in COS-7 cell MLK7/JNK co-transfection assays. In stimulated cells, DHP-2 at 200 nM or MLK7 small interfering RNA completely blocked anisomycin and UV induced but had no effect on interleukin-1beta or tumor necrosis factor-alpha-induced p38 and JNK activation. Additionally, the compound blocked anisomycin and UV-induced apoptosis in COS-7 cells. Heart tissue homogenates from MLK7 transgenic mice treated with DHP-2 at 30 mg/kg had reduced JNK and p38 activation with no apparent effect on ERK activation, demonstrating that this compound can be used to block MLK7-driven MAPK pathway activation in vivo. Taken together, these data demonstrate that MLK7 is the MAPKKK required for modulation of the stress-activated MAPKs downstream of anisomycin and UV stimulation and that DHP-2 can be used to block MLK7 pathway activation in cells as well as in vivo.
混合谱系激酶7(MLK7)是一种丝裂原活化蛋白激酶激酶激酶(MAPKKK),可激活促凋亡信号通路p38和JNK。对一系列潜在的激酶抑制剂文库进行了筛选,鉴定出一系列二氢吡咯并吡唑喹啉为MLK7体外催化活性的高效抑制剂。在该系列中,一种芳基取代的二氢吡咯并吡唑喹啉(DHP-2)在COS-7细胞MLK7/JNK共转染试验中抑制pJNK形成的IC50为70 nM。在受刺激的细胞中,200 nM的DHP-2或MLK7小干扰RNA完全阻断茴香霉素和紫外线诱导的作用,但对白细胞介素-1β或肿瘤坏死因子-α诱导的p38和JNK激活没有影响。此外,该化合物阻断了COS-7细胞中茴香霉素和紫外线诱导的细胞凋亡。用30 mg/kg的DHP-2处理的MLK7转基因小鼠的心脏组织匀浆中JNK和p38的激活减少,而对ERK激活没有明显影响,表明该化合物可用于体内阻断MLK7驱动的MAPK途径激活。综上所述,这些数据表明MLK7是茴香霉素和紫外线刺激下游应激激活的MAPK调节所需的MAPKKK,并且DHP-2可用于阻断细胞内和体内的MLK7途径激活。