Zhang Y, Huang Y, Rishi A K, Sheikh M S, Shroot B, Reichert U, Dawson M, Poirer G, Fontana J A
Department of Medicine and Karmanos Cancer Institute, Wayne State University, Detroit, Michigan, 48201-1932, USA.
Exp Cell Res. 1999 Feb 25;247(1):233-40. doi: 10.1006/excr.1998.4350.
6-[3-(1-Adamantyl)]-4-hydroxyphenyl]-2-naphthalene carboxylic acid (CD437) is a novel retinoid which induces apoptosis in the retinoic acid-resistant HL-60R human leukemia cell line. CD437-mediated poly(ADP-ribose) polymerase (PARP) cleavage and apoptosis of HL-60R cells does not require gene transcription or protein synthesis since it occurs in the presence or absence of either actinomycin D or cycloheximide. Marked activation of both the p38 and the JNK/SAPK serine and threonine kinases occurs at 1 h of exposure to CD437 with subsequent PARP cleavage at 2 h and apoptosis noted at 4 to 6 h. CD437 concentrations as little as 10 nM result in p38 activation and apoptosis of HL-60R cells. However, inhibition of p38 activation utilizing the specific inhibitor SB203580 does not block CD437-mediated PARP cleavage or apoptosis. In addition, p38 activation is dependent upon the activation of the caspase system since p38 activation is blocked by the pan ICE inhibitor Z-VAD fmk, which also inhibits CD437-mediated apoptosis and PARP cleavage in these cells. CD437-mediated activation of JNK/SAPK is not inhibited by Z-VAD fmk, suggesting that it lies upstream of CD437 activation of caspase activity and subsequent apoptosis. The role of JNK/SAPK activation in CD437-mediated apoptosis remains to be defined.
6-[3-(1-金刚烷基)]-4-羟基苯基]-2-萘甲酸(CD437)是一种新型类视黄醇,可诱导对维甲酸耐药的HL-60R人白血病细胞系发生凋亡。CD437介导的聚(ADP-核糖)聚合酶(PARP)裂解以及HL-60R细胞的凋亡并不需要基因转录或蛋白质合成,因为无论存在或不存在放线菌素D或环己酰亚胺,这种情况都会发生。在暴露于CD437 1小时时,p38以及JNK/SAPK丝氨酸和苏氨酸激酶均出现明显激活,随后在2小时出现PARP裂解,并在4至6小时观察到凋亡。低至10 nM的CD437浓度即可导致HL-60R细胞的p38激活和凋亡。然而,使用特异性抑制剂SB203580抑制p38激活并不能阻断CD437介导的PARP裂解或凋亡。此外,p38激活依赖于半胱天冬酶系统的激活,因为p38激活被泛ICE抑制剂Z-VAD fmk阻断,Z-VAD fmk也抑制这些细胞中CD437介导的凋亡和PARP裂解。Z-VAD fmk不抑制CD437介导的JNK/SAPK激活,这表明它位于CD437激活半胱天冬酶活性及随后凋亡的上游。JNK/SAPK激活在CD437介导的凋亡中的作用尚待确定。