Hori Takeshi, Kondo Takashi, Tabuchi Yoshiaki, Takasaki Ichiro, Zhao Qing-Li, Kanamori Masahiko, Yasuda Taketoshi, Kimura Tomoatsu
Department of Radiological Sciences, Graduate School of Medicine and Pharmaceutical Science, University of Toyama, Toyama 930-0194, Japan.
Chem Biol Interact. 2008 Mar 27;172(2):125-40. doi: 10.1016/j.cbi.2007.12.003. Epub 2007 Dec 15.
Anisomycin is known as a potent apoptosis inducer by activating JNK/SAPK and inhibiting protein synthesis during translation. However, only few details are known about the mechanism of apoptosis induced by this compound. The present study was undertaken to further elucidate the molecular mechanism of apoptosis and the changes of gene expression elicited by anisomycin using DNA microarrays and computational gene-expression analysis tools in human lymphoma U937 cells. Anisomycin was found to induce apoptosis in time- and concentration-dependent manner as confirmed by phosphatidylserine externalization and DNA fragmentation analysis. Furthermore, anisomycin-treated cells also showed caspase-8 activation, mitochondrial membrane potential collapse, Bid activation, caspase-3 cleavage and cytochrome c release into the cytosol. In the gene-expression analysis, six gene clusters were detected. From clusters I and II, three significant genetic networks were identified. Interestingly, many bZIP family transcription factors were observed in the up-regulated genetic networks. Moreover, the expression of protein-synthesis-related genes, such as EIF4 family proteins and ribosomal proteins, were inhibited. This finding could explain the reason why anisomycin inhibits the protein synthesis at the translation steps. These results provide novel information for understanding the molecular mechanism of apoptosis induced by anisomycin.
茴香霉素是一种通过激活JNK/SAPK和抑制翻译过程中的蛋白质合成来诱导细胞凋亡的强效诱导剂。然而,关于该化合物诱导细胞凋亡的机制,目前了解的细节还很少。本研究旨在利用DNA微阵列和计算基因表达分析工具,进一步阐明茴香霉素诱导人淋巴瘤U937细胞凋亡的分子机制以及基因表达的变化。通过磷脂酰丝氨酸外翻和DNA片段化分析证实,茴香霉素能以时间和浓度依赖的方式诱导细胞凋亡。此外,经茴香霉素处理的细胞还表现出半胱天冬酶-8激活、线粒体膜电位崩溃、Bid激活、半胱天冬酶-3裂解以及细胞色素c释放到细胞质中。在基因表达分析中,检测到六个基因簇。从簇I和簇II中,鉴定出三个重要的遗传网络。有趣的是,在上调的遗传网络中观察到许多bZIP家族转录因子。此外,蛋白质合成相关基因的表达,如EIF4家族蛋白和核糖体蛋白,受到抑制。这一发现可以解释茴香霉素在翻译步骤抑制蛋白质合成的原因。这些结果为理解茴香霉素诱导细胞凋亡的分子机制提供了新的信息。