Hogrefe H H, Hogrefe R I, Walder R Y, Walder J A
Department of Biochemistry, University of Iowa, Iowa City 52242.
J Biol Chem. 1990 Apr 5;265(10):5561-6.
The kinetic properties of Escherichia coli ribonuclease H (RNase H) were investigated using oligonucleotide substrates that consist of a short stretch of RNA, flanked on either side by DNA (DNA-RNA-DNA). In the presence of a complementary DNA strand, RNase H cleavage is restricted to the short ribonucleotide stretch of the DNA/RNA heteroduplex. The DNA-RNA-DNA substrate utilized for kinetic studies: (formula; see text) is cleaved at a single site (decreases) in the presence of a complementary DNA strand, to generate (dT)7-(rA)2-OH and p-(rA)2-(dT)9. Anion exchange high performance liquid chromatography was used to separate and quantitate the cleavage products. Under these conditions, RNase H-specific and nonspecific degradation products could be resolved. Kinetic parameters were measured under conditions of 100% hybrid formation (1.2-1.5 molar excess of complementary DNA, T much less than Tm). A linear double reciprocal plot was obtained, yielding a Km of 4.2 microM and a turnover number of 7.1 cleavages per s per RNase H monomer. The kinetic properties of substrate analogs containing varying lengths of RNA (n = 3-5) and 2'-O-methyl modifications were also investigated. Maximal turnover was observed with DNA-RNA-DNA substrates containing a minimum of four RNA residues. Kcat for the rA3 derivative was decreased by more than 100-fold. The Km appeared to decrease with the size of the internal RNA stretch (n = 3-5). No significant difference in turnover number of Km was observed when the flanking DNA was replaced with 2'-O-methyl RNA, suggesting that RNase H does not interact with this region of the heteroduplex.
利用由一小段RNA组成、两侧为DNA(DNA-RNA-DNA)的寡核苷酸底物,研究了大肠杆菌核糖核酸酶H(RNase H)的动力学性质。在互补DNA链存在的情况下,RNase H的切割仅限于DNA/RNA异源双链体的短核糖核苷酸片段。用于动力学研究的DNA-RNA-DNA底物:(分子式;见正文)在互补DNA链存在下于单个位点(减少)被切割,生成(dT)7-(rA)2-OH和p-(rA)2-(dT)9。采用阴离子交换高效液相色谱法分离和定量切割产物。在这些条件下,可以分辨出RNase H特异性和非特异性降解产物。在100%杂交形成(互补DNA摩尔过量1.2 - 1.5,T远低于熔解温度Tm)的条件下测量动力学参数。得到线性双倒数图,得到的Km为4.2 μM,每个RNase H单体每秒的转换数为7.1次切割。还研究了含有不同长度RNA(n = 3 - 5)和2'-O-甲基修饰的底物类似物的动力学性质。观察到含有至少四个RNA残基的DNA-RNA-DNA底物具有最大转换数。rA3衍生物的Kcat降低了100倍以上。Km似乎随着内部RNA片段大小(n = 3 - 5)的增加而降低。当侧翼DNA被2'-O-甲基RNA取代时,在Km的转换数上未观察到显著差异,这表明RNase H不与异源双链体的该区域相互作用。