Danenberg P V, Shea L C, Danenberg K D, Horikoshi T
Department of Biochemistry, University of Southern California School of Medicine, Los Angeles 90033.
Nucleic Acids Res. 1991 Jun 11;19(11):3123-8. doi: 10.1093/nar/19.11.3123.
The anti-cancer drug cis-diamminedichloroplatinum (II) (cis-DDP) reacted with Tetrahymena self-splicing rRNA ribozyme, causing loss of self-splicing activity and formation of a number of platinated RNA species. The formation of one distinct platinated product, migrating at an apparent size of 2400 nt, was closely associated with ribozyme inactivation. This platinated RNA was resistant to T1 ribonuclease digestion, suggesting the presence of inter-strand Pt cross-links. The reaction rate of cis-DDP with the ribozyme followed first order kinetics and showed a saturation effect with increasing cis-DDP concentration, characteristic of an affinity-label type of interaction rather than bimolecular collision. The apparent KI for binding of cis-DDP to the ribozyme was 62 microM. Ribozyme treated with urea was not inactivated by cis-DDP, indicating that the native structure of the RNA is required for reaction with cis-DDP. Mg++, which binds to the ribozyme and causes conformational changes in the molecule, protected the ribozyme from inactivation by cis-DDP and also prevented the formation of platinated RNA. These results suggest that binding of cis-DDP to sites formed by certain secondary or tertiary structural elements of the RNA enhance the rate and the specificity of reaction of the reagent with the ribozyme.
抗癌药物顺二氨二氯铂(II)(顺铂)与嗜热四膜虫自我剪接rRNA核酶发生反应,导致自我剪接活性丧失并形成多种铂化RNA物种。一种明显大小为2400 nt的独特铂化产物的形成与核酶失活密切相关。这种铂化RNA对T1核糖核酸酶消化具有抗性,表明存在链间Pt交联。顺铂与核酶的反应速率遵循一级动力学,并且随着顺铂浓度的增加呈现饱和效应,这是亲和标记类型相互作用而非双分子碰撞的特征。顺铂与核酶结合的表观解离常数(KI)为62 μM。用尿素处理的核酶不会被顺铂失活,这表明RNA的天然结构是与顺铂反应所必需的。与核酶结合并引起分子构象变化的Mg++可保护核酶不被顺铂失活,同时也阻止了铂化RNA的形成。这些结果表明,顺铂与RNA某些二级或三级结构元件形成的位点结合可提高该试剂与核酶反应的速率和特异性。