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两种pUC18高效T载体的构建 被引量:2

Construction of Two Highly Efficient pUC18 T-vectors
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摘要 Two T vectors were generated by restriction endonuclease Xcm Ⅰ instead of Taq or other DNA polymerases to create the 3’T over hangs.A fragment of adenoviral genome position 10659-11865 was amplified by PCR and Xcm Ⅰ recognition sites were introduced to both ends of the PCR product.This fragment was cloned into the Sma Ⅰ site of pUC18 or the linearized pUC18 with its polylinker deleted.The recombinant plamids were cleaved with Xcm Ⅰ.the larger fragments generated which had 3’T over hangs at both ends were used as T vctors.Genes of rotavirus VP7 and the plasminogen k5 were successfully cloned into these two T vectors with recombination efficiency (recombinants/transformants×100%) of 100%,no blue/white clolny screening assay was needed. Two T vectors were generated by restriction endonuclease Xcm Ⅰ instead of Taq or other DNA polymerases to create the 3'T over hangs.A fragment of adenoviral genome position 10659-11865 was amplified by PCR and Xcm Ⅰ recognition sites were introduced to both ends of the PCR product.This fragment was cloned into the Sma Ⅰ site of pUC18 or the linearized pUC18 with its polylinker deleted.The recombinant plamids were cleaved with Xcm Ⅰ.the larger fragments generated which had 3'T over hangs at both ends were used as T vctors.Genes of rotavirus VP7 and the plasminogen k5 were successfully cloned into these two T vectors with recombination efficiency (recombinants/transformants×100%) of 100%,no blue/white clolny screening assay was needed.
出处 《中国生物化学与分子生物学报》 CAS CSCD 2000年第4期562-564,共3页 Chinese Journal of Biochemistry and Molecular Biology
关键词 PUC18 T载体 PCR 基因克隆 XcmⅠ T vector, Restriction endonuclease, Xcm Ⅰ, PCR product, Cloning
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参考文献5

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同被引文献21

  • 1Zhou M Y, Clark S E, Gomez-Sanchez C E. Universal cloning method by TA strategy. BioTechniciues, 1995, 19( 1 ) : 34-35.
  • 2Marchuk D, Drumm M. Saulino A, et al. Construction of T- vectors, a rapid and general system for direct cloning of unmodified PCH products. Nucleic Acids Research, 1991, 19 (5) : 1154.
  • 3Ichihara Y, Kurosawa Y. Construution of new T vectors for direct cloning of PCR products. Gene, 1993, 130( 1 ) : 153-154.
  • 4Cha J, Bishai W, Chandrasegaran S. New vectors for direct cloning of PCR products. Gene, 1993, 136(1-2) : 369-370.
  • 5Aranishi F, Okimoto T. Engincered Xcm1 cassette-containing vector for PCH-based phyiogenetic analyses. Journal of Genetics, 2004, 83 ( 1 ) : 33-34.
  • 6Arashi-Heese N, Miwa M. Shibata H. Xcm1 site-containing vector for direct cloning and in vitro transcription of PCR product. Molecular Biotechnology, 1999, 12 ( 3 ) : 281-283.
  • 7Jeung J U, Cho S K, Shim K S, et al. Construction of two pGEM- 7Zt ( + ) phagemid T-tail vectors using ,4bali-restriction endonuclease sites for direct chining of PCR products. Plasmid, 2002, 48(2) : 160-163.
  • 8Jo C, Jo S A. A simple method to construct T-vectors using Xcm1 cassettes amplified by nonspecific PCR. Plasmid, 2001, 45 ( 1 ) : 3740.
  • 9Testori A, Sollitti P. Cloning unmodified PCR products using engineered Xcm1 restriction siles in a portable cassette. Methods in Molecular Biology 1997, 67: 89-100.
  • 10Bernard P, Gabant P, Bahassi E M, et al. Positive-selection vectors using the F plasmid eedR killer gene. Cene, 1994, 148 (1): 71-74.

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