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DNA聚合酶在非指导性模板上碱基置换诱变中的作用。

The role of DNA polymerase in base substitution mutagenesis on non-instructional templates.

作者信息

Strauss B, Rabkin S, Sagher D, Moore P

出版信息

Biochimie. 1982 Aug-Sep;64(8-9):829-38. doi: 10.1016/s0300-9084(82)80138-7.

Abstract

In vitro DNA synthesis on phi X174 or M13 templates with non-instructional lesions such as UV dimers or AP (apurinic/apyrimidinic) sites terminates one base before the site of the lesion when synthesis is catalyzed by T4 DNA polymerase or E. coli polymerase I. E. Coli polymerase I also produces termination bands at the site of AP lesions. Substitution of Mn2+ for Mg2+ and increasing the concentration of dNTP's results in elongation of the newly synthesized strand opposite the site of the lesion and beyond. Purine deoxynucleoside triphosphates are utilized for insertion opposite lesions to a greater extent than are pyrimidine deoxynucleoside triphosphates. Deoxy ATP is used almost exclusively for elongation opposite AP sites with pol I-Klenow fragment in the presence of Mg2+. We suppose that these results illustrate the previously observed greater affinity of polymerases under template-free conditions for purine nucleotides. We also suppose that the results can be used to account for mutagenic base selection on noninstructional DNA templates. If purines are preferentially selected by polymerases, then treatments which inactivate pyrimidines will lead to an excess of transitions whereas inactivation of purines will produce more transversions. Data in the literature support this hypothesis.

摘要

当用T4 DNA聚合酶或大肠杆菌聚合酶I催化合成时,在带有诸如紫外线二聚体或AP(脱嘌呤/脱嘧啶)位点等非指令性损伤的φX174或M13模板上进行体外DNA合成,会在损伤位点前一个碱基处终止。大肠杆菌聚合酶I在AP损伤位点也会产生终止条带。用Mn2+替代Mg2+并增加dNTP的浓度会导致新合成链在损伤位点及以外的位置延伸。嘌呤脱氧核苷三磷酸比嘧啶脱氧核苷三磷酸在损伤位点对面的插入中使用得更多。在Mg2+存在的情况下,脱氧ATP几乎专门用于与大肠杆菌聚合酶I的Klenow片段在AP位点对面的延伸。我们认为这些结果说明了先前观察到的聚合酶在无模板条件下对嘌呤核苷酸具有更高的亲和力。我们还认为这些结果可用于解释非指令性DNA模板上的诱变碱基选择。如果聚合酶优先选择嘌呤,那么使嘧啶失活的处理将导致转换过量,而嘌呤失活将产生更多的颠换。文献中的数据支持这一假设。

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