Niyogi S K, Feldman R P
Nucleic Acids Res. 1981 Jun 11;9(11):2615-27. doi: 10.1093/nar/9.11.2615.
By use of poly(dA-dT) as template and Escherichia coli RNA polymerase, several metal ions were tested for their effect on the efficiency of transcription and on the misincorporation of CMP into the poly(rA-rU) product. In the presence of 10 mM MgCl2, Mn2+ has a stimulatory effect on the transcription, Co2+ has very little effect on the reaction, Cu2+ and Zn2+ are strongly inhibitory, and Cd2+ and Ni2+ are less inhibitory. The background misincorporation of CMP in the presence of MgCl2 is about 1 nucleotide per 2000 correct nucleotides incorporated and is independent of Mg2+ concentration. Zn2+, Ca2+, Sr2+, Li+, Na+, and K+--all nonmutagenic and noncarcinogenic--do not increase misincorporation. Mn2+ causes a concentration-dependent threefold increase in the misincorporation that can be slightly reversed at higher MgCl2 concentrations. Cd2+ causes a dramatic increase in the misincorporation with increasing CdCl2 concentration that can be substantially overcome by higher concentrations of Mg2+. Cu2+ also increases the misincorporation, Ni2+ slightly increases it, and Co2+ does not increase it at all. Several control experiments indicate that the misincorporation of CMP is dependent on the template-directed synthesis of poly(rA-rU). Nearest-neighbor analysis indicates that CMP is incorporated in place of UMP into the poly(rA-rU) product. The increase in misincorporation appears to be related both to the "hard-soft" character of the metal ions and to their carcinogenic potential.
以聚(dA - dT)为模板,利用大肠杆菌RNA聚合酶,测试了几种金属离子对转录效率以及CMP错掺入聚(rA - rU)产物的影响。在存在10 mM MgCl2的情况下,Mn2 +对转录有刺激作用,Co2 +对反应影响很小,Cu2 +和Zn2 +有强烈抑制作用,Cd2 +和Ni2 +抑制作用较弱。在MgCl2存在下,CMP的背景错掺入约为每掺入2000个正确核苷酸中有1个核苷酸,且与Mg2 +浓度无关。Zn2 +、Ca2 +、Sr2 +、Li +、Na +和K +(均无致突变性和致癌性)不会增加错掺入。Mn2 +会导致错掺入呈浓度依赖性增加三倍,在较高MgCl2浓度下可略有逆转。Cd2 +会随着CdCl2浓度增加导致错掺入急剧增加,较高浓度的Mg2 +可基本克服这种情况。Cu2 +也会增加错掺入,Ni2 +略有增加,而Co2 +根本不会增加错掺入。几个对照实验表明,CMP的错掺入依赖于聚(rA - rU)的模板导向合成。相邻碱基分析表明,CMP取代UMP掺入到聚(rA - rU)产物中。错掺入的增加似乎既与金属离子的“硬 - 软”特性有关,也与它们的致癌潜力有关。