Literature DB >> 25382639

Expression of monellin in a food-grade delivery system in Saccharomyces cerevisiae.

Jun Liu1, Da-zhong Yan1, Sheng-jun Zhao2.   

Abstract

BACKGROUND: Genetically modified (GM) foods have caused much controversy. Construction of a food-grade delivery system is a desirable technique with presumptive impact on industrial applications from the perspective of bio-safety. The aim of this study was to construct a food-grade delivery system for Saccharomyces cerevisiae and to study the expression of monellin from the berries of the West African forest plant Dioscoreophyllum cumminsii in this system.
RESULTS: A food-grade system for S. cerevisiae was constructed based on ribosomal DNA (rDNA)-mediated homologous recombination to enable high-copy-number integration of the expression cassette inserted into the rDNA locus. A copper resistance gene (CUP1) was used as the selection marker for yeast transformation. Because variants of transformants containing different copy numbers at the CUP1 locus can be readily selected after growth in the presence of elevated copper levels, we suggest that this system would prove useful in the generation of tandemly iterated gene clusters. Using this food-grade system, a single-chain monellin gene was heterologously expressed. The yield of monellin reached a maximum of 675 mg L(-1) .
CONCLUSION: This system harbors exclusively S. cerevisiae DNA with no antibiotic resistance genes, and it should therefore be appropriate for safe use in the food industry. Monellin was shown to be expressed in this food-grade delivery system. To our knowledge, this is the first report so far on expression of monellin in a food-grade expression system in S. cerevisiae.
© 2014 Society of Chemical Industry.

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Keywords:  CUP1 gene; S. cerevisiae; food-grade system; monellin; ribosomal DNA

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Year:  2014        PMID: 25382639     DOI: 10.1002/jsfa.6997

Source DB:  PubMed          Journal:  J Sci Food Agric        ISSN: 0022-5142            Impact factor:   3.638


  1 in total

1.  Enhancing monellin production by Pichia pastoris at low cell induction concentration via effectively regulating methanol metabolism patterns and energy utilization efficiency.

Authors:  Luqiang Jia; Tingyong Tu; Qiangqiang Huai; Jiaowen Sun; Shanshan Chen; Xin Li; Zhongping Shi; Jian Ding
Journal:  PLoS One       Date:  2017-10-05       Impact factor: 3.240

  1 in total

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