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Improved fusion protein expression of EGFP via the mutation of both Kozak and the initial ATG codon

Since its discovery, green fluorescence protein (GFP) has been used as a reporter in a broad range of applications, including the determination of gene expresion in diverse organisms, and subcellular protein localization. pEGFP-N1 is a eukayotic expression vector encoding EGFP, the MCS of which loca...

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Autores principales: Dai, Chao, Cao, Zhijian, Wu, Yingliang, Yi, Hong, Jiang, Dahe, Li, Wenxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Versita 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6275746/
https://www.ncbi.nlm.nih.gov/pubmed/17318296
http://dx.doi.org/10.2478/s11658-007-0008-z
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author Dai, Chao
Cao, Zhijian
Wu, Yingliang
Yi, Hong
Jiang, Dahe
Li, Wenxin
author_facet Dai, Chao
Cao, Zhijian
Wu, Yingliang
Yi, Hong
Jiang, Dahe
Li, Wenxin
author_sort Dai, Chao
collection PubMed
description Since its discovery, green fluorescence protein (GFP) has been used as a reporter in a broad range of applications, including the determination of gene expresion in diverse organisms, and subcellular protein localization. pEGFP-N1 is a eukayotic expression vector encoding EGFP, the MCS of which locates at the N terminus of EGFP. In this study, the cDNA sequence of scorpion toxin BmKK2 was inserted into the XhoI-HindIII cut of pEGFP-N1 to construct a toxin-EGFP fusion gene (named pEGFP-BmKK2). Fluorescence imaging revealed that HEK 293T cells that were transfected by pEGFP-BmKK2 emitted green fluorescence. Transcription of pEGFP-BmKK2 was confirmed by RT-PCR. However, western blotting analysis showed that the transfected HEK 293T cells expressed mostly EGFP, but little toxin-EGFP fusion protein, implying that pEGFP-N1 cannot be used as a fusion expression vector for subcellular protein localization for the BmKK2 gene. Consequently, two modified recombinant vectors (pEGFP-BmKK2-M1 and pEGFP-BmKK2-M2) were constructed based on pEGFP-BmKK2. This greatly improved the expression of toxin-EGFP fusion protein from pEGFP-BmKK2-M2.
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spelling pubmed-62757462018-12-10 Improved fusion protein expression of EGFP via the mutation of both Kozak and the initial ATG codon Dai, Chao Cao, Zhijian Wu, Yingliang Yi, Hong Jiang, Dahe Li, Wenxin Cell Mol Biol Lett Short Communication Since its discovery, green fluorescence protein (GFP) has been used as a reporter in a broad range of applications, including the determination of gene expresion in diverse organisms, and subcellular protein localization. pEGFP-N1 is a eukayotic expression vector encoding EGFP, the MCS of which locates at the N terminus of EGFP. In this study, the cDNA sequence of scorpion toxin BmKK2 was inserted into the XhoI-HindIII cut of pEGFP-N1 to construct a toxin-EGFP fusion gene (named pEGFP-BmKK2). Fluorescence imaging revealed that HEK 293T cells that were transfected by pEGFP-BmKK2 emitted green fluorescence. Transcription of pEGFP-BmKK2 was confirmed by RT-PCR. However, western blotting analysis showed that the transfected HEK 293T cells expressed mostly EGFP, but little toxin-EGFP fusion protein, implying that pEGFP-N1 cannot be used as a fusion expression vector for subcellular protein localization for the BmKK2 gene. Consequently, two modified recombinant vectors (pEGFP-BmKK2-M1 and pEGFP-BmKK2-M2) were constructed based on pEGFP-BmKK2. This greatly improved the expression of toxin-EGFP fusion protein from pEGFP-BmKK2-M2. Versita 2007-02-23 /pmc/articles/PMC6275746/ /pubmed/17318296 http://dx.doi.org/10.2478/s11658-007-0008-z Text en © University of Wrocław 2007
spellingShingle Short Communication
Dai, Chao
Cao, Zhijian
Wu, Yingliang
Yi, Hong
Jiang, Dahe
Li, Wenxin
Improved fusion protein expression of EGFP via the mutation of both Kozak and the initial ATG codon
title Improved fusion protein expression of EGFP via the mutation of both Kozak and the initial ATG codon
title_full Improved fusion protein expression of EGFP via the mutation of both Kozak and the initial ATG codon
title_fullStr Improved fusion protein expression of EGFP via the mutation of both Kozak and the initial ATG codon
title_full_unstemmed Improved fusion protein expression of EGFP via the mutation of both Kozak and the initial ATG codon
title_short Improved fusion protein expression of EGFP via the mutation of both Kozak and the initial ATG codon
title_sort improved fusion protein expression of egfp via the mutation of both kozak and the initial atg codon
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6275746/
https://www.ncbi.nlm.nih.gov/pubmed/17318296
http://dx.doi.org/10.2478/s11658-007-0008-z
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