Walsh Jason M, Beuning Penny J
Department of Chemistry and Chemical Biology, Northeastern University, 360 Huntington Avenue, 102 Hurtig Hall, Boston, MA 02115, USA.
J Nucleic Acids. 2012;2012:530963. doi: 10.1155/2012/530963. Epub 2012 Jun 7.
The genetic code is continuously expanding with new nucleobases designed to suit specific research needs. These synthetic nucleotides are used to study DNA polymerase dynamics and specificity and may even inhibit DNA polymerase activity. The availability of an increasing chemical diversity of nucleotides allows questions of utilization by different DNA polymerases to be addressed. Much of the work in this area deals with the A family DNA polymerases, for example, Escherichia coli DNA polymerase I, which are DNA polymerases involved in replication and whose fidelity is relatively high, but more recent work includes other families of polymerases, including the Y family, whose members are known to be error prone. This paper focuses on the ability of DNA polymerases to utilize nonnatural nucleotides in DNA templates or as the incoming nucleoside triphosphates. Beyond the utility of nonnatural nucleotides as probes of DNA polymerase specificity, such entities can also provide insight into the functions of DNA polymerases when encountering DNA that is damaged by natural agents. Thus, synthetic nucleotides provide insight into how polymerases deal with nonnatural nucleotides as well as into the mutagenic potential of nonnatural nucleotides.
遗传密码正随着为满足特定研究需求而设计的新核碱基不断扩展。这些合成核苷酸用于研究DNA聚合酶的动力学和特异性,甚至可能抑制DNA聚合酶的活性。核苷酸化学多样性的不断增加使得不同DNA聚合酶对其利用的问题得以解决。例如,该领域的许多工作都涉及A家族DNA聚合酶,如大肠杆菌DNA聚合酶I,它们是参与复制的DNA聚合酶,保真度相对较高,但最近的工作也包括其他家族的聚合酶,如Y家族,其成员已知容易出错。本文重点关注DNA聚合酶在DNA模板中利用非天然核苷酸或作为进入的核苷三磷酸的能力。除了非天然核苷酸作为DNA聚合酶特异性探针的用途外,这类物质还能在遇到被天然因素损伤的DNA时,为深入了解DNA聚合酶的功能提供线索。因此,合成核苷酸有助于深入了解聚合酶如何处理非天然核苷酸以及非天然核苷酸的诱变潜力。