Singer B, Chavez F, Spengler S J
Biochemistry. 1986 Mar 25;25(6):1201-5. doi: 10.1021/bi00354a001.
O4-Methyl-, O4-ethyl-, and O4-isopropylthymidine 5'-triphosphates, which can be formed by N-nitroso carcinogens, were tested for their ability to substitute for thymidine 5'-triphosphate (dTTP) in synthesis catalyzed by Escherichia coli DNA polymerase I (Pol I) by using activated DNA or synthetic polymers as templates. All could substitute for dTTP for short periods, the rate and extent decreasing with the size of the alkyl group. Because the structure of O4-alkylthymidine does not permit normal hydrogen bond formation with deoxyadenosine, it was inferred that eventual formation of a poor or frayed primer end was responsible for termination of synthesis. Synthesis of polymers at temperatures ranging from 0 to 40 degrees C showed that the extent of incorporation using the O4-alkyl-dTTPs was favored, relative to dTTP, when the terminal helical structure was stabilized by low temperatures. Kmapp values were determined for each O4-alkyldeoxynucleoside 5'-triphosphate. These values were 0.7 microM for dTTP, 5 microM for methyl-dTTP, 11 microM for ethyl-dTTP, and 33 microM for isopropyl-dTTP. O4-Alkyl-dTTPs were tested for their ability to inhibit or compete with dTTP incorporation and found to have a minimal effect, even when present at high concentration. These experiments indicated that Pol I can incorporate deoxynucleotides with O4-alkyl substituents into an ordered DNA structure. A postulated base-pairing scheme with deoxyadenosine is described.
由N-亚硝基致癌物形成的O4-甲基胸苷5'-三磷酸、O4-乙基胸苷5'-三磷酸和O4-异丙基胸苷5'-三磷酸,通过使用活化的DNA或合成聚合物作为模板,测试它们在大肠杆菌DNA聚合酶I(Pol I)催化的合成中替代胸苷5'-三磷酸(dTTP)的能力。所有这些物质在短时间内都可以替代dTTP,其速率和程度随着烷基大小的增加而降低。由于O4-烷基胸苷的结构不允许与脱氧腺苷形成正常的氢键,因此可以推断,最终形成的不良或松散的引物末端是合成终止的原因。在0至40摄氏度的温度范围内合成聚合物表明,当末端螺旋结构通过低温稳定时,相对于dTTP,使用O4-烷基-dTTPs的掺入程度更有利。测定了每种O4-烷基脱氧核苷5'-三磷酸的表观Km值。这些值对于dTTP为0.7微摩尔,对于甲基-dTTP为5微摩尔,对于乙基-dTTP为11微摩尔,对于异丙基-dTTP为33微摩尔。测试了O4-烷基-dTTPs抑制或与dTTP掺入竞争的能力,发现即使在高浓度下存在,其影响也最小。这些实验表明,Pol I可以将带有O4-烷基取代基的脱氧核苷酸掺入有序的DNA结构中。描述了一种与脱氧腺苷的假定碱基配对方案。