Yancey-Wrona J E, Matson S W
Department of Biology, University of North Carolina, Chapel Hill 27599.
Nucleic Acids Res. 1992 Dec 25;20(24):6713-21. doi: 10.1093/nar/20.24.6713.
A partial duplex DNA substrate containing the Lac repressor binding site, within the duplex region, was constructed to examine the effect of bound Lac repressor on the unwinding reaction catalyzed by several DNA helicases. The substrate contained 90 base pairs of double-stranded DNA and, in the absence of Lac repressor, was effectively unwound by each of the seven helicases tested. The unwinding reactions catalyzed by Escherichia coli Rep protein, bacteriophage T4 Dda protein and E. coli DNA helicase I were not inhibited by the presence of bound Lac repressor. Both SV40 T antigen and E. coli helicase II were partially inhibited by bound repressor at the highest repressor concentrations tested. The helicase reactions catalyzed by E. coli DnaB protein and helicase IV were substantially inhibited by the presence of bound protein. When the length of the duplex region was increased to 323 base pairs the inhibition spectrum caused by bound Lac repressor on the unwinding reactions catalyzed by DnaB protein, helicase I and helicase II was essentially the same as that observed using the shorter partial duplex molecule. Inhibition of the unwinding reaction was due to the presence of bound Lac repressor as evidenced by the substantially weaker inhibition of helicase IV by Lac repressor in the presence of IPTG. In addition, we have shown that Rep protein displaces the bound repressor protein during the course of an unwinding reaction.
构建了一种部分双链DNA底物,其双链区域内含有乳糖阻遏物结合位点,用于研究结合的乳糖阻遏物对几种DNA解旋酶催化的解旋反应的影响。该底物包含90个碱基对的双链DNA,在没有乳糖阻遏物的情况下,所测试的七种解旋酶中的每一种都能有效地解开它。大肠杆菌Rep蛋白、噬菌体T4 Dda蛋白和大肠杆菌DNA解旋酶I催化的解旋反应不受结合的乳糖阻遏物的抑制。在测试的最高阻遏物浓度下,SV40 T抗原和大肠杆菌解旋酶II都受到结合阻遏物的部分抑制。大肠杆菌DnaB蛋白和解旋酶IV催化的解旋酶反应受到结合蛋白的显著抑制。当双链区域的长度增加到323个碱基对时,结合的乳糖阻遏物对DnaB蛋白、解旋酶I和解旋酶II催化的解旋反应所产生的抑制谱与使用较短的部分双链分子时观察到的基本相同。解旋反应的抑制是由于结合的乳糖阻遏物的存在,这在IPTG存在下乳糖阻遏物对解旋酶IV的抑制明显较弱中得到了证明。此外,我们已经表明,Rep蛋白在解旋反应过程中取代了结合的阻遏蛋白。