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DNA聚合酶对多个连续假胸腺嘧啶核苷的掺入及其对DNA双链结构的影响。

Incorporation of multiple sequential pseudothymidines by DNA polymerases and their impact on DNA duplex structure.

作者信息

Havemann Stephanie A, Hoshika Shuichi, Hutter Daniel, Benner Steven A

机构信息

Department of Microbiology & Cell Science, Space Life Sciences Laboratory, Kennedy Space Center, University of Florida, FL, USA.

出版信息

Nucleosides Nucleotides Nucleic Acids. 2008 Mar;27(3):261-78. doi: 10.1080/15257770701853679.

Abstract

Thermal denaturation and circular dichroism studies suggested that multiple (up to 12), sequential pseudothymidines, a representative C-glycoside, do not perturb the structure of a representative DNA duplex. Further, various Family A and B DNA polymerases were found to extend a primer by incorporating four sequential pseudothymidine triphosphates, and then continue the extension to generate full-length product. Detailed studies showed that Taq polymerase incorporated up to five sequential C-glycosides, but not more. These results constrain architectures for sequencing, quantitating, and analyzing DNA analogs that exploit C-glycosides, and define better the challenge of creating a synthetic biology using these with natural polymerases.

摘要

热变性和圆二色性研究表明,多个(多达12个)连续的假胸苷(一种代表性的C-糖苷)不会干扰代表性DNA双链体的结构。此外,发现各种A族和B族DNA聚合酶通过掺入四个连续的假胸苷三磷酸来延伸引物,然后继续延伸以生成全长产物。详细研究表明,Taq聚合酶最多可掺入五个连续的C-糖苷,但不会更多。这些结果限制了利用C-糖苷对DNA类似物进行测序、定量和分析的架构,并更好地定义了使用这些类似物与天然聚合酶创建合成生物学的挑战。

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