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三氧化二砷诱导的细胞凋亡中不依赖CD95的半胱天冬酶8激活的作用

Involvement of CD95-independent caspase 8 activation in arsenic trioxide-induced apoptosis.

作者信息

Kitamura K, Minami Y, Yamamoto K, Akao Y, Kiyoi H, Saito H, Naoe T

机构信息

Department of Infectious Diseases, Nagoya University School of Medicine, Japan.

出版信息

Leukemia. 2000 Oct;14(10):1743-50. doi: 10.1038/sj.leu.2401900.

Abstract

Arsenic trioxide (As2O3)-treatment is effective in acute promyelocytic leukemia (APL) patients with t(15;17). Clinically achievable concentrations of As2O3 induce apoptosis in NB4, an APL cell line, in vitro. Here, to study the mechanism of As2O3-induced apoptosis, we established an As2O3-resistant subline, NB4/As. Growth of NB4/As was inhibited by 50% after 2 day-treatment (IC50) at 1.6 microM As2O3, whereas IC50 of NB4 was 0.3 microM. Degradation of PML-RARalpha and change of the PML-subcellular localization were similarly induced by As2O3 in NB4 and NB4/As, suggesting that their contribution to apoptosis is small. Treatment with 1 microM As2O3 induced the activation of caspase 3 as well as a loss of mitochondrial transmembrane potential (deltapsim) in NB4 but not in NB4/As. Caspase 8 and Bid were also activated by As2O3 in NB4 but not in NB4/As. In NB4, an inhibitor of caspase 8 blocked not only the activation of caspase 3 but also the loss of deltapsim. Neither cell line expressed CD95/Fas, and agonistic anti-Fas antibody (CH-11) failed to cause apoptosis. Neither antagonistic anti-CD95/Fas antibody nor anti-Fas ligand antibodies influenced the As2O3-induced apoptosis. NB4/As had a higher concentration of intracellular glutathione (GSH) than NB4 (96 vs 32 nmol/mg). Reduction of the GSH level by buthionine sulfoxide (BSO) completely restored the sensitivity to As2O3 in NB4/As. Furthermore, caspase activation and the loss of deltapsim were recovered by combination treatment with BSO. These findings suggest that the As2O3 treatment activates caspase 8 in a CD95-independent but GSH concentration-dependent manner. In combination with BSO, As2O3 might be applied to therapy of leukemia/cancers which are insensitive to the clinically achievable concentrations of As2O3.

摘要

三氧化二砷(As2O3)治疗对伴有t(15;17)的急性早幼粒细胞白血病(APL)患者有效。临床上可达到的As2O3浓度在体外可诱导APL细胞系NB4发生凋亡。在此,为研究As2O3诱导凋亡的机制,我们建立了一个对As2O3耐药的亚系NB4/As。在1.6 microM As2O3处理2天(IC50)后,NB4/As的生长被抑制了50%,而NB4的IC50为0.3 microM。As2O3在NB4和NB4/As中同样诱导了PML-RARalpha的降解和PML亚细胞定位的改变,这表明它们对凋亡的贡献较小。用1 microM As2O3处理可诱导NB4中caspase 3的激活以及线粒体跨膜电位(deltapsim)的丧失,但在NB4/As中则不然。As2O3在NB4中也激活了caspase 8和Bid,但在NB4/As中未激活。在NB4中,caspase 8抑制剂不仅阻断了caspase 3的激活,还阻断了deltapsim的丧失。两种细胞系均不表达CD95/Fas,且激动性抗Fas抗体(CH-11)未能诱导凋亡。拮抗性抗CD95/Fas抗体和抗Fas配体抗体均不影响As2O3诱导的凋亡。NB4/As的细胞内谷胱甘肽(GSH)浓度高于NB4(96对32 nmol/mg)。用丁硫氨酸亚砜胺(BSO)降低GSH水平可完全恢复NB4/As对As2O3的敏感性。此外,联合使用BSO可恢复caspase激活和deltapsim的丧失。这些发现表明,As2O3处理以一种不依赖CD95但依赖GSH浓度的方式激活caspase 8。与BSO联合使用时,As2O3可能适用于对临床上可达到的As2O3浓度不敏感的白血病/癌症的治疗。

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