Department of Information Physics and Computing, Graduate School of Information Science and Technology, The University of Tokyo, Tokyo, Japan.
Biotechnology Research Institute for Drug Discovery, National Institute of Advanced Industrial Science and Technology (AIST), Ibaraki, Japan.
Mol Cell Biochem. 2018 Aug;445(1-2):45-58. doi: 10.1007/s11010-017-3250-3. Epub 2017 Dec 16.
We have shown that pharmacological inhibition of HSP90 ATPase activity induces apoptosis of myoblasts during their differentiation. However, the signaling pathways remain not fully characterized. We report that pharmacological targeting of HSP90 with 17-AAG activates the intrinsic pathway including caspase-dependent and caspase-independent pathways. 17-AAG induces the typical apoptotic phenotypes including PARP cleavage, chromatin condensation, and nuclear fragmentation with mitochondrial release of cytochrome c, Smac/DIABLO, procaspase-9 processing, and caspase-3 activation. AIF and EndoG redistribute from the mitochondria into the cytosol and are partially translocated to the nucleus in 17-AAG-treated cells. These results suggest that caspase-dependent and caspase-independent pathways should be considered in apoptosis of myogenic cells induced by inhibition of HSP90 ATPase activity.
我们已经表明,在成肌细胞分化过程中,通过抑制 HSP90 的 ATP 酶活性可诱导其凋亡。然而,其信号通路仍未完全阐明。我们报告称,用 17-AAG 对 HSP90 进行药理学靶向治疗可激活包括 caspase 依赖性和 caspase 非依赖性途径在内的内在途径。17-AAG 诱导典型的凋亡表型,包括 PARP 切割、染色质浓缩和核碎裂,伴有细胞色素 c、Smac/DIABLO、procaspase-9 加工和 caspase-3 激活的释放。在 17-AAG 处理的细胞中,AIF 和 EndoG 从线粒体重新分布到细胞质,并部分转位到细胞核。这些结果表明,在 HSP90 ATP 酶活性抑制诱导的成肌细胞凋亡中,应考虑 caspase 依赖性和 caspase 非依赖性途径。