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- Clyde A. Hutchison
- Synthetic Biology Group, The J. Craig Venter Institute, 9704 Medical Center Drive, Rockville, MD 20850
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- Hamilton O. Smith
- Synthetic Biology Group, The J. Craig Venter Institute, 9704 Medical Center Drive, Rockville, MD 20850
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- Cynthia Pfannkoch
- Synthetic Biology Group, The J. Craig Venter Institute, 9704 Medical Center Drive, Rockville, MD 20850
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- J. Craig Venter
- Synthetic Biology Group, The J. Craig Venter Institute, 9704 Medical Center Drive, Rockville, MD 20850
書誌事項
- 公開日
- 2005-11-14
- DOI
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- 10.1073/pnas.0508809102
- 公開者
- National Academy of Sciences
この論文をさがす
説明
<jats:p> We describe conditions for rolling-circle amplification (RCA) of individual DNA molecules 5–7 kb in size by >10 <jats:sup>9</jats:sup> -fold, using φ29 DNA polymerase. The principal difficulty with amplification of small amounts of template by RCA using φ29 DNA polymerase is “background” DNA synthesis that usually occurs when template is omitted, or at low template concentrations. Reducing the reaction volume while keeping the amount of template fixed increases the template concentration, resulting in a suppression of background synthesis. Cell-free cloning of single circular molecules by using φ29 DNA polymerase was achieved by carrying out the amplification reactions in very small volumes, typically 600 nl. This procedure allows cell-free cloning of individual synthetic DNA molecules that cannot be cloned in <jats:italic>Escherichia coli</jats:italic> , for example synthetic phage genomes carrying lethal mutations. It also allows cell-free cloning of genomic DNA isolated from bacteria. This DNA can be sequenced directly from the φ29 DNA polymerase reaction without further amplification. In contrast to PCR amplification, RCA using φ29 DNA polymerase does not produce mutant jackpots, and the high processivity of the enzyme eliminates stuttering at homopolymer tracts. Cell-free cloning has many potential applications to both natural and synthetic DNA. These include environmental DNA samples that have proven difficult to clone and synthetic genes encoding toxic products. The method may also speed genome sequencing by eliminating the need for biological cloning. </jats:p>
収録刊行物
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- Proceedings of the National Academy of Sciences
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Proceedings of the National Academy of Sciences 102 (48), 17332-17336, 2005-11-14
National Academy of Sciences

