Literature DB >> 23606285

Designed construction of recombinant DNA at the ura3Δ0 locus in the yeast Saccharomyces cerevisiae.

Tomoaki Fukunaga1, Kamonchai Cha-Aim, Yuki Hirakawa, Ryota Sakai, Takao Kitagawa, Mikiko Nakamura, Sanom Nonklang, Hisashi Hoshida, Rinji Akada.   

Abstract

Recombinant DNAs are traditionally constructed using Escherichia coli plasmids. In the yeast Saccharomyces cerevisiae, chromosomal gene targeting is a common technique, implying that the yeast homologous recombination system could be applied for recombinant DNA construction. In an attempt to use a S. cerevisiae chromosome for recombinant DNA construction, we selected the single ura3Δ0 locus as a gene targeting site. By selecting this single locus, repeated recombination using the surrounding URA3 sequences can be performed. The recombination system described here has several advantages over the conventional plasmid system, as it provides a method to confirm the selection of correct recombinants because transformation of the same locus replaces the pre-existing selection marker, resulting in the loss of the marker in successful recombinations. In addition, the constructed strains can serve as both PCR templates and hosts for preparing subsequent recombinant strains. Using this method, several yeast strains that contained selection markers, promoters, terminators and target genes at the ura3Δ0 locus were successfully generated. The system described here can potentially be applied for the construction of any recombinant DNA without the requirement for manipulations in E. coli. Interestingly, we unexpectedly found that several G/C-rich sequences used for fusion PCR lowered gene expression when located adjacent to the start codon.
Copyright © 2013 John Wiley & Sons, Ltd.

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Year:  2013        PMID: 23606285     DOI: 10.1002/yea.2957

Source DB:  PubMed          Journal:  Yeast        ISSN: 0749-503X            Impact factor:   3.239


  2 in total

1.  CRISPR-Cas9 Approach Constructed Engineered Saccharomyces cerevisiae with the Deletion of GPD2, FPS1, and ADH2 to Enhance the Production of Ethanol.

Authors:  Peizhou Yang; Shuying Jiang; Suwei Jiang; Shuhua Lu; Zhi Zheng; Jianchao Chen; Wenjing Wu; Shaotong Jiang
Journal:  J Fungi (Basel)       Date:  2022-07-01

2.  Autophagy regulates levels of tumor suppressor enzyme protein phosphatase 6.

Authors:  Nobuyuki Fujiwara; Shusaku Shibutani; Yusuke Sakai; Toshio Watanabe; Issay Kitabayashi; Hiroko Oshima; Masanobu Oshima; Hisashi Hoshida; Rinji Akada; Tatsuya Usui; Takashi Ohama; Koichi Sato
Journal:  Cancer Sci       Date:  2020-10-26       Impact factor: 6.716

  2 in total

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