Abstract
The excision repair machinery of a thermophilic bacterium has been shown to recognize and repair an expanded genetic base pair. Native Thermus aquaticus DNA polymerase will remove a mispaired natural base and replace it with a non-natural base to form an expanded base pair. In addition, DNA ligase will recognize a nick formed by polymerase between two non-natural base pairs and covalently attach the two strands, thus demonstrating complete repair of a bifurcated base-paired model duplex. These results add evidence to the idea that the cellular replication and repair machinery of an organism containing an expanded genetic alphabet could recognize and properly repair a site containing consecutive unnatural bases.
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CITATION STYLE
Moser, M. J., & Prudent, J. R. (2003). Enzymatic repair of an expanded genetic information system. Nucleic Acids Research, 31(17), 5048–5053. https://doi.org/10.1093/nar/gkg709
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