Brewer L C, Wells R D
J Virol. 1974 Dec;14(6):1494-502. doi: 10.1128/JVI.14.6.1494-1502.1974.
Differential inhibition conditions were established for the DNA polymerase and RNase H activities of avian myeloblastosis virus (AMV) with ether-disrupted AMV and a purified enzyme preparation. The RNase H activity of ether-disrupted AMV with (rA)(n).(dT)(n) and (rA)(n).(dT)(11) as substrates was inhibited 80 to 100% by preincubation with NaF at a final reaction concentration of 27 to 30 mM. Under these conditions, the DNA polymerase activity was inhibited only 0 to 20%. Similar inhibitions were found with exogenous Rous sarcoma virus 35S and 70S RNA.DNA hybrid and phiX174 DNA.RNA hybrid as substrates. Studies were also performed with a purified enzyme preparation, in which the two activities essentially co-purified. The RNase H activity was inhibited >80% by 150 mM KCl with three different hybrid substrates, whereas the DNA polymerase activity was uninhibited. The DNA polymerase was completely inactivated by heat denaturation at 41 C or by omission of the deoxytriphosphates from the reaction mixture; the RNase H remained active. These differential inhibition conditions were used to compare the size of the DNA product synthesized with and without simultaneous RNase H action and to examine the effect of inhibition of the DNA polymerase on the size of the RNase H products. The size of the products of one activity was not affected by inhibition of the other activity. These results suggest that the AMV DNA polymerase and RNase H are not coupled mechanistically.
利用经乙醚处理的禽成髓细胞瘤病毒(AMV)和纯化的酶制剂,建立了针对AMV的DNA聚合酶和核糖核酸酶H活性的差异抑制条件。以(rA)(n)·(dT)(n)和(rA)(n)·(dT)(11)为底物时,经乙醚处理的AMV的核糖核酸酶H活性在最终反应浓度为27至30 mM的NaF预孵育下被抑制80%至100%。在这些条件下,DNA聚合酶活性仅被抑制0%至20%。以外源劳斯肉瘤病毒35S和70S RNA·DNA杂交体以及φX174 DNA·RNA杂交体为底物时,也发现了类似的抑制情况。还对一种纯化的酶制剂进行了研究,其中这两种活性基本是共纯化的。150 mM KCl对三种不同的杂交底物可使核糖核酸酶H活性被抑制>80%,而DNA聚合酶活性未受抑制。DNA聚合酶在41℃热变性或反应混合物中省略脱氧三磷酸时会完全失活;核糖核酸酶H仍保持活性。这些差异抑制条件用于比较在有和没有同时存在核糖核酸酶H作用的情况下合成的DNA产物的大小,并研究DNA聚合酶抑制对核糖核酸酶H产物大小的影响。一种活性产物的大小不受另一种活性抑制的影响。这些结果表明,AMV DNA聚合酶和核糖核酸酶H在机制上没有耦合。