Keck M V, Hecht S M
Department of Chemistry, University of Virginia, Charlottesville 22901, USA.
Biochemistry. 1995 Sep 19;34(37):12029-37. doi: 10.1021/bi00037a046.
Bleomycin A2 (BLM) was found to mediate sequence specific hydrolysis of tRNA(Phe) in the absence of added metal ions. BLM A2 promoted phosphodiester bond hydrolysis 3' to the pyrimidine residue at all resolved Py-Pu sites not involving modified bases, as demonstrated by high-resolution electrophoretic analysis of 5'- and 3'-32P-end-labeled substrates. The reaction proceeded with surprising facility, approaching efficiency that of oxidative strand scission mediated by the FeII.BLM A2 complex. By the use of a number of BLM congeners, as well as a study of the time, temperature, and salt dependence of the hydrolysis, it was shown that in many respects the hydrolytic reaction parallels the oxidative degradation of RNA and DNA mediated by metallobleomycins. Thus, in contrast to the well-characterized oxidative degradation of DNA and RNA by bleomycin studied for two decades, the present report documents the ability of certain metal-free bleomycins to mediate RNA hydrolysis.
在不添加金属离子的情况下,发现博来霉素A2(BLM)可介导tRNA(Phe)的序列特异性水解。高分辨率电泳分析5'-和3'-32P末端标记的底物表明,BLM A2在所有不涉及修饰碱基的已解析的嘧啶-嘌呤位点上,促进嘧啶残基3'端的磷酸二酯键水解。该反应进行得异常顺利,接近由FeII.BLM A2复合物介导的氧化链断裂效率。通过使用多种博来霉素同系物,以及对水解的时间、温度和盐依赖性的研究表明,在许多方面,水解反应与金属博来霉素介导的RNA和DNA氧化降解相似。因此,与二十年来对博来霉素介导的DNA和RNA氧化降解的充分研究不同,本报告记录了某些无金属博来霉素介导RNA水解的能力。