Driggers P H, Beattie K L
Verna & Marrs McLean Department of Biochemistry, Baylor College of Medicine, Houston, Texas 77030.
Biochemistry. 1988 Mar 8;27(5):1729-35. doi: 10.1021/bi00405a052.
We have utilized an electrophoretic assay of misincorporation to investigate the possibility that ionization of 5-bromouracil (BU) may play a role in its mispairing during DNA synthesis in vitro. We examined the effects of increasing pH on the relative rates of formation of BU.G and T.G mispairs during chain elongation catalyzed by various DNA polymerases. For the Klenow fragment of Escherichia coli DNA polymerase I, increasing pH facilitated BU.G mispair formation (relative to T.G mispairing) when BU was present in the template strand. This effect showed a strong dependence on sequence context. Increasing pH had little effect on the relative rate of misincorporation of BrdUMP versus dTMP (at template G) by the Klenow polymerase. Misincorporation opposite template BU residues catalyzed by Maloney murine leukemia virus DNA polymerase and DNA polymerase beta (Novikoff hepatoma) also increased with pH, but for these two enzymes, there was no apparent dependence on sequence context. With T4 DNA polymerase and E. coli DNA polymerase III holoenzyme, a similar occurrence of BU.G and T.G mispairing during polymerization was observed, whether BU was present in the template or in the incoming nucleotide, and there was little effect of pH. The results reported here are consistent with a mispairing mechanism for template BU wherein the anionic form of the base mispairs with G.
我们利用错配的电泳分析方法来研究5-溴尿嘧啶(BU)的离子化在体外DNA合成过程中其错配方面可能发挥的作用。我们检测了在各种DNA聚合酶催化的链延伸过程中,pH升高对BU.G和T.G错配形成的相对速率的影响。对于大肠杆菌DNA聚合酶I的Klenow片段,当模板链中存在BU时,pH升高促进了BU.G错配的形成(相对于T.G错配)。这种效应强烈依赖于序列背景。pH升高对Klenow聚合酶在模板G处BrdUMP与dTMP错掺入的相对速率影响很小。莫洛尼鼠白血病病毒DNA聚合酶和DNA聚合酶β(诺维科夫肝癌)催化的与模板BU残基相对的错掺入也随pH升高而增加,但对于这两种酶,没有明显的序列背景依赖性。对于T4 DNA聚合酶和大肠杆菌DNA聚合酶III全酶,无论BU存在于模板中还是进入的核苷酸中,在聚合过程中都观察到类似的BU.G和T.G错配情况,并且pH影响很小。此处报道的结果与模板BU的错配机制一致,即碱基的阴离子形式与G错配。