Hiramatsu Rie, Hara Toshiaki, Akimoto Hidetoshi, Takikawa Osamu, Kawabe Tsutomu, Isobe Ken-Ichi, Nagase Fumihiko
Department of Medical Technology, Nagoya University School of Health Sciences, Nagoya, Aichi, Japan.
J Cell Biochem. 2008 Jan 1;103(1):42-53. doi: 10.1002/jcb.21384.
3-Hydroxyanthranilic acid (3HAA) is one of the tryptophan metabolites along the kynurenine pathway and induces apoptosis in T cells. We investigated the mechanism of 3HAA-induced apoptosis in mouse thymocytes. The optimal concentration of 3HAA for apoptosis induction was 300-500 microM. The induction of apoptosis by a suboptimal concentration (100 microM) of 3HAA was enhanced by superoxide dismutase (SOD) as well as MnCl2 and further promoted in the presence of catalase. The 3HAA-mediated generation of intracellular reactive oxygen species (ROS) was enhanced by SOD or MnCl2 and inhibited by catalase. Corresponding to apoptosis induction, the generation of cinnabarinic acid (CA) through the oxidation of 3HAA was enhanced by SOD or MnCl2 in the presence of catalase. The synthesized CA possessed more than 10 times higher apoptosis-inducing activity than 3HAA. The intracellular ROS generation was induced by CA within 15 min and decreased to the control levels within 4 h, whereas the 3HAA-induced ROS generation increased gradually up to 4 h. Corresponding to ROS generation, the mitochondrial membrane potential was downregulated within 15 min and retained by the CA treatment. Apoptosis induction by 3HAA or CA was dependent on caspases, and caspase-3 was much more strongly activated by CA than 3HAA. In conclusion, the CA generated from 3HAA possesses a strong apoptosis-inducing activity in thymocytes through ROS generation, the loss of mitochondrial membrane potential, and caspase activation.
3-羟基邻氨基苯甲酸(3HAA)是色氨酸沿犬尿氨酸途径代谢的产物之一,可诱导T细胞凋亡。我们研究了3HAA诱导小鼠胸腺细胞凋亡的机制。诱导凋亡的3HAA最佳浓度为300 - 500微摩尔。超氧化物歧化酶(SOD)以及氯化锰可增强次优浓度(100微摩尔)的3HAA诱导的凋亡,而过氧化氢酶存在时可进一步促进凋亡。SOD或氯化锰可增强3HAA介导的细胞内活性氧(ROS)生成,而过氧化氢酶则抑制该过程。与凋亡诱导相对应,在过氧化氢酶存在的情况下,SOD或氯化锰可增强通过3HAA氧化生成朱红酸(CA)的过程。合成的CA具有比3HAA高10倍以上的凋亡诱导活性。CA在15分钟内诱导细胞内ROS生成,并在4小时内降至对照水平,而3HAA诱导的ROS生成则逐渐增加至4小时。与ROS生成相对应,线粒体膜电位在15分钟内下调,并通过CA处理得以维持。3HAA或CA诱导的凋亡依赖于半胱天冬酶,并且CA比3HAA更强烈地激活半胱天冬酶-3。总之,由3HAA生成的CA通过ROS生成、线粒体膜电位丧失和半胱天冬酶激活在胸腺细胞中具有强大的凋亡诱导活性。