Sousa R, Padilla R
Department of Biochemistry, University of Texas Health Science Center at San Antonio 78212, USA.
EMBO J. 1995 Sep 15;14(18):4609-21. doi: 10.1002/j.1460-2075.1995.tb00140.x.
We have identified a T7 RNA polymerase (RNAP) mutant that efficiently utilizes deoxyribonucleoside triphosphates. In vitro this mutant will synthesize RNA, DNA or 'transcripts' of mixed dNMP/rNMP composition depending on the mix of NTPs present in the synthesis reaction. The mutation is conservative, changes Tyr639 within the active site to phenylalanine and does not affect promoter specificity or overall activity. Non-conservative mutations of this tyrosine also reduce discrimination between deoxyribo- and ribonucleoside triphosphates, but these mutations also cause large activity reductions. Of 26 mutations of other residues in and around the active site examined none showed marked effects on rNTP/dNTP discrimination. Mutations of the corresponding tyrosine in DNA polymerase (DNAP) I increase miscoding, though effects on dNTP/rNTP discrimination for the DNAP I mutations have not been reported. This conserved tyrosine may therefore play a similar role in many polymerases by sensing incorrect geometry in the structure of the substrate/template/product due to inappropriate substrate structure or mismatches. T7 RNAP can use RNA templates as well as DNA templates and is capable of both primer extension and de novo initiation. The Y639F mutant retains the ability to use RNA or DNA templates. Thus this mutant can display de novo initiated or primed DNA-directed DNA polymerase, reverse transcriptase, RNA-directed RNA polymerase or DNA-directed RNA polymerase activities depending simply on the templates and substrates presented to it in the synthesis reaction.
我们鉴定出了一种能有效利用脱氧核苷三磷酸的T7 RNA聚合酶(RNAP)突变体。在体外,根据合成反应中存在的NTP混合物,这种突变体将合成RNA、DNA或具有混合dNMP/rNMP组成的“转录本”。该突变是保守的,将活性位点内的Tyr639变为苯丙氨酸,且不影响启动子特异性或总体活性。该酪氨酸的非保守突变也会降低对脱氧核糖核苷三磷酸和核糖核苷三磷酸的区分能力,但这些突变也会导致活性大幅降低。在所检测的活性位点及其周围其他26个残基的突变中,没有一个对rNTP/dNTP区分显示出明显影响。DNA聚合酶(DNAP)I中相应酪氨酸的突变会增加错配编码,不过尚未报道DNAP I突变对dNTP/rNTP区分的影响。因此,这个保守的酪氨酸可能在许多聚合酶中发挥类似作用,通过感知由于不适当的底物结构或错配导致的底物/模板/产物结构中的错误几何形状。T7 RNAP既能使用RNA模板也能使用DNA模板,并且能够进行引物延伸和从头起始。Y639F突变体保留了使用RNA或DNA模板的能力。因此,这种突变体可以简单地根据合成反应中提供给它的模板和底物,展现出从头起始或引物引导的DNA指导的DNA聚合酶、逆转录酶、RNA指导的RNA聚合酶或DNA指导的RNA聚合酶活性。