Moore J, Boswell S, Hoffman R, Burgess G, Hromas R
Department of Medicine, Walther Oncology Center, Indiana University Medical Center, Indianapolis 46252-5121.
Leuk Res. 1993 Aug;17(8):703-9. doi: 10.1016/0145-2126(93)90078-y.
Cell suicide, or apoptosis, is now recognized as an essential regulatory step in such diverse developmental processes as embryogenesis, thymocyte restriction, and hematopoiesis. One of the major features of apoptosis is the activation of an endogenous nuclease that cleaves DNA into nucleosomal fragments. Little is known about the activation or specificity of the apoptotic endonuclease. In this study, we investigated signalling pathways and the specificity of the apoptotic nuclease. We found that forced over-expression of activated H-ras inhibited activation of the apoptotic endonuclease. Since a high percentage of myelodysplasias and leukemias have mutations that activate ras, this finding lends insight into how ras might be leukemogenic. In addition, the phorbol ester TPA and a cyclic AMP analogue also slowed activation of this endonuclease. Interestingly, protein synthesis inhibition stimulated the endonuclease activity. In addition, by cloning and sequencing apoptotic fragments we found that the apoptotic nuclease has no sequence specificity. Thus, the apoptotic nuclease inhibited by H-ras over-expression was random in nature.
细胞自杀,即细胞凋亡,现已被公认为是胚胎发生、胸腺细胞受限和造血等多种发育过程中必不可少的调控步骤。细胞凋亡的主要特征之一是激活一种内源性核酸酶,该酶可将DNA切割成核小体片段。关于凋亡核酸内切酶的激活或特异性,人们了解甚少。在本研究中,我们调查了信号通路和凋亡核酸酶的特异性。我们发现,强制过表达活化的H-ras会抑制凋亡核酸内切酶的激活。由于高比例的骨髓发育异常和白血病存在激活ras的突变,这一发现为ras可能致癌的机制提供了见解。此外,佛波酯TPA和环磷酸腺苷类似物也会减缓这种核酸内切酶的激活。有趣的是,蛋白质合成抑制会刺激核酸内切酶的活性。此外,通过克隆和测序凋亡片段,我们发现凋亡核酸酶没有序列特异性。因此,被H-ras过表达抑制的凋亡核酸酶本质上是随机的。