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Research Papers
Bio/Technology  9, 657 - 663 (1991)
doi:10.1038/nbt0791-657

A Universal Method for the Direct Cloning of PCR Amplified Nucleic Acid

David A. Mead1, N. Kristy Pey1, Corinna Herrnstadt2, Robert A. Marcil2 & Lloyd M. Smith1, *

  1Department of Chemistry, University of Wisconsin, Madison, WI 53706.

  2Invitrogen Corporation, 11588 Sorrento Valley Rd., Suite 20, San Diego, CA 92121.

  *Corresponding author.

We have devised a simple, universal cloning strategy that permits the direct liga-tion of PCR amplified nucleic acid to a compatible vector preparation. The method does not require that special restriction sites or additional sequences be appended onto the amplification primers, nor the use of restriction endonucleases, modifying enzymes, or any purification procedures. This approach takes advantage of the single 3' deoxyadenylate extension that Thermus aquations, Thermus flavus, and Thermococcus litoralis DNA polymerases add to the termini of amplified nucleic acid. A new type of plasmid was constructed that allows the preparation of ends containing a single complementary 3' deoxythymidylate extension. Cloning PCR products by this method is approximately 50 times more efficient than blunt-ended ligation reactions. This direct PCR ligation technique has been engineered in-phase with a truncated lacZ gene to facilitate the discrimination of recombinants from non-recombinants. We have applied this method to directly clone amplified RNA and DNA from as little as 1 mul of a PCR reaction, without prior modification or purification steps.

REFERENCES
  1. Mullis, K.B. and Faloona, F.A. 1987. Specific synthesis of DNA in vitro via a polymerase-catalyzed chain reaction. Methods in Enzymol. 155: 335−350. | Article | ISI | ChemPort |
  2. Saiki, R.K., Scharf, S., Faloona, F., Mullis, K.B., Horn, G. T., Erlich, H. A. and Arnheim, N. 1985. Enzymatic amplification of beta-globin genomic sequences and restriction site analysis for diagnosis of sickle cell anemia. Science 230: 1350−1354. | PubMed  | ISI | ChemPort |
  3. Frohman, M.A., Dush, M.K. and Martin, G.R. 1988. Rapid production of full-length cDNAs from rare transcripts: amplification using a single gene-specific oligonucleotide primer. Proc. Natl. Acad. Sci. USA 85: 8998−9002. | PubMed  | ChemPort |
  4. Lee, C.C., Xiangwei, W., Gibbs, R.A., Cook, R.G., Muzny, D.M. and Caskey, C.T. 1988. Generation of cDNA probes directed by amino acid sequence: cloning of urate oxidase. Science 239: 1288−1291. | PubMed  | ChemPort |
  5. Ohara, O., Dorit, R. and Gilbert, W. 1989. One-sided polymerase chain reaction: the amplification of cDNA. Proc. Natl. Acad. Sci. USA 86: 5673−5677. | PubMed  | ChemPort |
  6. Larrick, J.W., Danielsson, L., Brenner, C.A., Wallace, E.F., Abra-hamson, M., Fry, K. E. and Borrebaeck, C. A. K. 1989. Polymerase chain reaction using mixed primers: cloning of human monoclonal antibody variable region genes from single hybridoma cells. Biotechnology 7: 934−938. | ChemPort |
  7. Gyllenstein, U.B. and Erlich, H.A. 1988. Generation of single-stranded DNA by the polymerase chain reaction and its application to direct sequencing of the HLA-DQA locus. Proc. Natl. Acad. Sci. USA 85: 7652−7656. | PubMed  | ChemPort |
  8. Loh, E.Y., Eliott, J.F., Cwirla, S., Lanier, L.L. and Davis, M.M. 1989. Polymerase chain reaction with single-sided specificity: analysis of T cell receptor gamma chain. Science 243: 217−220. | PubMed  | ISI | ChemPort |
  9. Ochman, H., Gerber, A.S. and Hartl, D.L. 1988. Genetic applications of an inverse polymerase chain reaction. Genetics 120: 621−623. | PubMed  | ISI | ChemPort |
  10. Nelson, D.L., Ledbetter, S.A., Corbo, L., Victoria, M.F., Ramirez-Solis, R., Webester, T.D., Ledbetter, D.H. and Caskey, C.T. 1989. Alu polymerase cahin reaction: a method for rapid isolation of human-specific sequences from complex DNA sources. Proc. Natl. Acad. Sci. USA 86: 6686−6690. | PubMed  | ChemPort |
  11. Johnson, D.H. 1990. Molecular cloning of DNA from specific chromosomal regions by microdissection and sequence-independent amplification of DNA. Genomics 6: 243−251. | PubMed  | ISI | ChemPort |
  12. Kinzler, K.W. and Vogelstein, B. 1989. Whole genome PCR: application to the identification of sequences bound by gene regulatory proteins. Nucl. Acids Res. 17: 3645−3653. | PubMed  | ISI | ChemPort |
  13. Kaufman, D.L. and Evans, G.A. 1990. Restriction endonuclease cleavage at the termini of PCR products. BioTechniques 9: 304−306. | PubMed  | ISI | ChemPort |
  14. Clark, J.M. 1988. Novel non-templated nucleotide addition reactions catalyzed by procaryotic and eucaryotic DNA polymerases. Nucl. Acids Res. 20: 9677−9686.
  15. Yanisch-Perron, C., Vieira, J. and Messing, J. 1985. Improved M13 phage cloning vectors and host strains: nucleotide sequences of the M13mp18 and pUC19 vectors. Gene 33: 103−119 | Article | PubMed  | ChemPort |
  16. Messing, J. 1983 New M13 vectors for cloning. Methods in Enzymol. 101: 20−78. | Article | ISI | ChemPort |
  17. Mead, D.A., Skorupa, E. and Kemper, B. 1986. Single stranded DNA "blue" T7 promoter phagemids: a versatile tandem promoter system for cloning and protein engineering. Protein Engineering 1: 67−74. | PubMed  | ISI | ChemPort |
  18. Wiaderkiewicz, R. and Ruiz-Carrillo, A. 1987. Mismatch and blunt to protruding-end joining by DNA ligases. Nucl. Acids Res. 15: 7831−7848. | PubMed  | ISI | ChemPort |
  19. Brooks, J.E. 1987. Properties and uses of restriction endonucleases. Methods in Enzymol. 152: 113−129. | Article | ISI | ChemPort |
  20. Lobet, Y., Peacock, M.G. and Cieplak, W. Jr., 1989. Frame-shift mutation in the lacZ, gene of certain commercially available pUC18 plasmids. Nucl. Acids Res. 17: 4897. | PubMed  | ISI | ChemPort |
  21. Aslanidis, C. and de Jong, P.J. 1990. Ligation-independent cloning of PCR products (LIC-PCR). Nucl. Acids Res. 18: 6069−6074. | PubMed  | ISI | ChemPort |
  22. Hoekstra, M.F., Siefert, H.S., Nickoloff, J. and Hefron, F. 1991. Shuttle mutagenesis: bacterial transposons for genetic manipulations in yeast. Methods in Enzymol. 194: 329−342. | Article | ISI | ChemPort |
  23. Hemsley, A., Arnheim, N., Toney, M.D., Cortopassi, G. and Galas, D.J. 1989. A simple method for site-directed mutagenesis using the polymerase chain reaction. Nucl. Acids Res. 17: 6545−6551. | PubMed  | ISI | ChemPort |
  24. Karn, J., Brenner, S. and Barnett, L. 1983. Protein structural domains in the Caenorhabditis elegans unc-54 myosin heavy chain gene are not separated by introns. Proc. Natl. Acad. Sci. USA 80: 4253−4257. | PubMed  | ChemPort |
  25. Fiers, W., Contreras, R., Duerinck, F., Haegeman, G., Iserentant, D., Merregaert, J., Min Jou, W., Molemans, F., Raeymaekers, A. Van de Berghe, A., Volckaert, G. and Ysebaert, M. 1976. Complete nucleotide sequence of bacteriophage MS2 RNA: primary and secondary structure of the replicase gene. Nature 260: 500−507. | PubMed  | ISI | ChemPort |
  26. Webb, N.R. and Summers, M.D. 1990. Expression of proteins using recombinant baculovirus. Technique 2: 173−188. | ChemPort |
  27. Huynh, T., Young, R. and Davies, R. 1984. Construction and screening of cDNA libraries in lambdagt10 and lambdagt11, p. 49−78. In: DNA Cloning, Vol 1: A Practical Approach. Glover, D. (Ed.). IRL Press, Oxford.
  28. Hanahan, D. 1983. Studies on transformation of Escherichia coli with plasmids. J. Mol. Biol. 166: 557−580. | PubMed  | ISI | ChemPort |
  29. Ausubel, F., Brent, R., Kingston, R., Moore, D., Seidman, J., Smith, J. and Struhl, K. (Eds.) 1987. Current Protocols in Molecular Biology, Wiley, New York.
  30. Mead, D.A., McClary, J.A., Luckey, J. A., Kostichka, A. J., Witney, F. R. and Smith, L. M. 1991. Bst DNA polymerase permits rapid sequence analysis from nanogram amounts of template. BioTechniques in press.
  31. Marchuk, D., Drumm, M., Saulino, A. and Collins, F.S. 1991. Construction of T-vectors, a rapid and general system of direct cloning of unmodified PCR products. Nuc. Acids Res. 19: 1154. | ISI | ChemPort |
  32. Holton, T.A. and Graham, M.W. 1991. A simple and efficient method for direct cloning of PCR products using ddT-tailed vectors. Nuc. Acids Res. 19: 1156. | ISI | ChemPort |
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