Koizumi M, Hayase Y, Iwai S, Kamiya H, Inoue H, Ohtsuka E
Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan.
Nucleic Acids Res. 1989 Sep 12;17(17):7059-71. doi: 10.1093/nar/17.17.7059.
RNA enzymes (ribozymes) which can cleave RNA by recognizing sequences of 9-15 bases are described. Substrates must contain UX (X = U, C or A). A ribozyme consisting of two oligoribonucleotides (19 mer and 15 mer) was shown to cleave a ribo 11 mer catalytically with Km and kcat values of 0.53 microM and 0.03 min-1, respectively. A non-cleavable substrate-ribozyme complex containing 2'-O-methylnucleoside was prepared and CD spectra were compared at different temperature. In order to obtain an efficient ribozyme, a one-strand RNA with a chain length of 37 was prepared. The ribozyme was shown to distinguish a single base mutation in mRNA's which were prepared by transcription of two synthetic DNA duplexes coding for positions 7-26 of c-Ha-ras protein. The mutant (Val-12) mRNA which had GUU was cleaved but the wild type mRNA which contained GGU was not changed, when treated by the ribozymes in the presence of Mg2+.
已描述了能够通过识别9至15个碱基的序列来切割RNA的RNA酶(核酶)。底物必须包含UX(X = U、C或A)。一种由两个寡核糖核苷酸(19聚体和15聚体)组成的核酶被证明能够催化切割一个11聚体的核糖核酸,其Km和kcat值分别为0.53微摩尔和0.03分钟⁻¹。制备了一种含有2'-O-甲基核苷的不可切割的底物-核酶复合物,并在不同温度下比较了圆二色光谱。为了获得一种高效的核酶,制备了一种链长为37的单链RNA。当在Mg²⁺存在下用核酶处理时,该核酶能够区分通过转录编码c-Ha-ras蛋白第7至26位的两条合成DNA双链体而制备的mRNA中的单个碱基突变。含有GUU的突变型(Val-12)mRNA被切割,但含有GGU的野生型mRNA未发生变化。