Enzymatic assembly of DNA molecules up to several hundred kilobases (original) (raw)
- Brief Communication
- Published: 12 April 2009
- Lei Young1,
- Ray-Yuan Chuang1,
- J Craig Venter1,2,
- Clyde A Hutchison III2 &
- …
- Hamilton O Smith2
Nature Methods volume 6, pages 343–345 (2009) Cite this article
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Abstract
We describe an isothermal, single-reaction method for assembling multiple overlapping DNA molecules by the concerted action of a 5′ exonuclease, a DNA polymerase and a DNA ligase. First we recessed DNA fragments, yielding single-stranded DNA overhangs that specifically annealed, and then covalently joined them. This assembly method can be used to seamlessly construct synthetic and natural genes, genetic pathways and entire genomes, and could be a useful molecular engineering tool.
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Figure 1: One-step isothermal in vitro recombination.

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Figure 2: Examples of the one-step isothermal assembly method.

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References
- Gellert, M. Proc. Natl. Acad. Sci. USA 57, 148–155 (1967).
Article CAS PubMed PubMed Central Google Scholar - Smith, H.O. & Wilcox, K.W. J. Mol. Biol. 51, 379–391 (1970).
Article CAS PubMed Google Scholar - Shetty, R.P., Endy, D. & Knight, T.F. Jr. J. Biol. Eng. 2, 5 (2008).
Article PubMed PubMed Central Google Scholar - Yount, B., Denison, M.R., Weiss, S.R. & Baric, R.S. J. Virol. 76, 11065–11078 (2002).
Article CAS PubMed PubMed Central Google Scholar - Horton, R.M., Cai, Z.L., Ho, S.N. & Pease, L.R. Biotechniques 8, 528–535 (1990).
CAS PubMed Google Scholar - Horton, R.M. Mol. Biotechnol. 3, 93–99 (1995).
Article CAS PubMed Google Scholar - Bang, D. & Church, G.M. Nat. Methods 5, 37–39 (2008).
Article CAS PubMed Google Scholar - Geu-Flores, F., Nour-Eldin, H.H., Nielsen, M.T. & Halkier, B.A. Nucleic Acids Res. 35, e55 (2007).
Article PubMed PubMed Central Google Scholar - Aslanidis, C. & de Jong, P.J. Nucleic Acids Res. 18, 6069–6074 (1990).
Article CAS PubMed PubMed Central Google Scholar - Li, M.Z. & Elledge, S.J. Nat. Methods 4, 251–256 (2007).
Article CAS PubMed Google Scholar - Gibson, D.G. et al. Science 319, 1215–1220 (2008).
Article CAS PubMed Google Scholar - Sayers, J.R. & Eckstein, F. J. Biol. Chem. 265, 18311–18317 (1990).
CAS PubMed Google Scholar - Sheng, Y., Mancino, V. & Birren, B. Nucleic Acids Res. 23, 1990–1996 (1995).
Article CAS PubMed PubMed Central Google Scholar - Endy, D. Nature 438, 449–453 (2005).
Article CAS PubMed Google Scholar - Drubin, D.A., Way, J.C. & Silver, P.A. Genes Dev. 21, 242–254 (2007).
Article CAS PubMed Google Scholar - Lartigue, C., Duret, S., Garnier, M. & Renaudin, J. Plasmid 48, 149–159 (2002).
Article CAS PubMed Google Scholar - Henikoff, S. Gene 28, 351–359 (1984).
Article CAS PubMed Google Scholar - Hutchison, C.A., III, Smith, H.O., Pfannkoch, C. & Venter, J.C. Proc. Natl. Acad. Sci. USA 102, 17332–17336 (2005).
Article CAS PubMed PubMed Central Google Scholar
Acknowledgements
This work was supported by the Office of Science (Biological and Environmental Research) United States Department of Energy grant number DE-FG02-02ER63453, and Synthetic Genomics, Inc.
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Authors and Affiliations
- The J. Craig Venter Institute, Synthetic Biology Group, Rockville, Maryland, USA
Daniel G Gibson, Lei Young, Ray-Yuan Chuang & J Craig Venter - The J. Craig Venter Institute, Synthetic Biology Group, San Diego, California, USA
J Craig Venter, Clyde A Hutchison III & Hamilton O Smith
Authors
- Daniel G Gibson
- Lei Young
- Ray-Yuan Chuang
- J Craig Venter
- Clyde A Hutchison III
- Hamilton O Smith
Contributions
D.G.G., L.Y., R.-Y.C., J.C.V., C.A.H. and H.O.S. designed research; D.G.G., L.Y., R.-Y.C., C.A.H. and H.O.S. performed research; D.G.G., L.Y., R.-Y.C., J.C.V., C.A.H. and H.O.S. analyzed data; and D.G.G., C.A.H. and H.O.S. wrote the paper.
Corresponding author
Correspondence toDaniel G Gibson.
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Competing interests
J.C.V is chief executive officer and co-chief scientific officer of Synthetic Genomics, Inc (SGI), a privately held entity that develops genomic-driven strategies to address global energy and environmental challenges. H.O.S. is co-chief scientific officer and a member of the board of directors of SGI. C.A.H. is chairman of the SGI scientific advisory board. All three of these authors hold SGI stock.
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Gibson, D., Young, L., Chuang, RY. et al. Enzymatic assembly of DNA molecules up to several hundred kilobases.Nat Methods 6, 343–345 (2009). https://doi.org/10.1038/nmeth.1318
- Received: 05 January 2009
- Accepted: 16 March 2009
- Published: 12 April 2009
- Issue date: May 2009
- DOI: https://doi.org/10.1038/nmeth.1318