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Frame-Insensitive Expression Cloning of Fluorescent Protein from Scolionema suvaense

Expression cloning from cDNA is an important technique for acquiring genes encoding novel fluorescent proteins. However, the probability of in-frame cDNA insertion following the first start codon of the vector is normally only 1/3, which is a cause of low cloning efficiency. To overcome this issue,...

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Autores principales: Horiuchi, Yuki, Laskaratou, Danai, Sliwa, Michel, Ruckebusch, Cyril, Hatori, Kuniyuki, Mizuno, Hideaki, Hotta, Jun-ichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5855593/
https://www.ncbi.nlm.nih.gov/pubmed/29373508
http://dx.doi.org/10.3390/ijms19020371
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author Horiuchi, Yuki
Laskaratou, Danai
Sliwa, Michel
Ruckebusch, Cyril
Hatori, Kuniyuki
Mizuno, Hideaki
Hotta, Jun-ichi
author_facet Horiuchi, Yuki
Laskaratou, Danai
Sliwa, Michel
Ruckebusch, Cyril
Hatori, Kuniyuki
Mizuno, Hideaki
Hotta, Jun-ichi
author_sort Horiuchi, Yuki
collection PubMed
description Expression cloning from cDNA is an important technique for acquiring genes encoding novel fluorescent proteins. However, the probability of in-frame cDNA insertion following the first start codon of the vector is normally only 1/3, which is a cause of low cloning efficiency. To overcome this issue, we developed a new expression plasmid vector, pRSET-TriEX, in which transcriptional slippage was induced by introducing a DNA sequence of (dT)(14) next to the first start codon of pRSET. The effectiveness of frame-insensitive cloning was validated by inserting the gene encoding eGFP with all three possible frames to the vector. After transformation with one of these plasmids, E. coli cells expressed eGFP with no significant difference in the expression level. The pRSET-TriEX vector was then used for expression cloning of a novel fluorescent protein from Scolionema suvaense. We screened 3658 E. coli colonies transformed with pRSET-TriEX containing Scolionema suvaense cDNA, and found one colony expressing a novel green fluorescent protein, ScSuFP. The highest score in protein sequence similarity was 42% with the chain c of multi-domain green fluorescent protein like protein “ember” from Anthoathecata sp. Variations in the N- and/or C-terminal sequence of ScSuFP compared to other fluorescent proteins indicate that the expression cloning, rather than the sequence similarity-based methods, was crucial for acquiring the gene encoding ScSuFP. The absorption maximum was at 498 nm, with an extinction efficiency of 1.17 × 10(5) M(−1)·cm(−1). The emission maximum was at 511 nm and the fluorescence quantum yield was determined to be 0.6. Pseudo-native gel electrophoresis showed that the protein forms obligatory homodimers.
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spelling pubmed-58555932018-03-20 Frame-Insensitive Expression Cloning of Fluorescent Protein from Scolionema suvaense Horiuchi, Yuki Laskaratou, Danai Sliwa, Michel Ruckebusch, Cyril Hatori, Kuniyuki Mizuno, Hideaki Hotta, Jun-ichi Int J Mol Sci Article Expression cloning from cDNA is an important technique for acquiring genes encoding novel fluorescent proteins. However, the probability of in-frame cDNA insertion following the first start codon of the vector is normally only 1/3, which is a cause of low cloning efficiency. To overcome this issue, we developed a new expression plasmid vector, pRSET-TriEX, in which transcriptional slippage was induced by introducing a DNA sequence of (dT)(14) next to the first start codon of pRSET. The effectiveness of frame-insensitive cloning was validated by inserting the gene encoding eGFP with all three possible frames to the vector. After transformation with one of these plasmids, E. coli cells expressed eGFP with no significant difference in the expression level. The pRSET-TriEX vector was then used for expression cloning of a novel fluorescent protein from Scolionema suvaense. We screened 3658 E. coli colonies transformed with pRSET-TriEX containing Scolionema suvaense cDNA, and found one colony expressing a novel green fluorescent protein, ScSuFP. The highest score in protein sequence similarity was 42% with the chain c of multi-domain green fluorescent protein like protein “ember” from Anthoathecata sp. Variations in the N- and/or C-terminal sequence of ScSuFP compared to other fluorescent proteins indicate that the expression cloning, rather than the sequence similarity-based methods, was crucial for acquiring the gene encoding ScSuFP. The absorption maximum was at 498 nm, with an extinction efficiency of 1.17 × 10(5) M(−1)·cm(−1). The emission maximum was at 511 nm and the fluorescence quantum yield was determined to be 0.6. Pseudo-native gel electrophoresis showed that the protein forms obligatory homodimers. MDPI 2018-01-26 /pmc/articles/PMC5855593/ /pubmed/29373508 http://dx.doi.org/10.3390/ijms19020371 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Horiuchi, Yuki
Laskaratou, Danai
Sliwa, Michel
Ruckebusch, Cyril
Hatori, Kuniyuki
Mizuno, Hideaki
Hotta, Jun-ichi
Frame-Insensitive Expression Cloning of Fluorescent Protein from Scolionema suvaense
title Frame-Insensitive Expression Cloning of Fluorescent Protein from Scolionema suvaense
title_full Frame-Insensitive Expression Cloning of Fluorescent Protein from Scolionema suvaense
title_fullStr Frame-Insensitive Expression Cloning of Fluorescent Protein from Scolionema suvaense
title_full_unstemmed Frame-Insensitive Expression Cloning of Fluorescent Protein from Scolionema suvaense
title_short Frame-Insensitive Expression Cloning of Fluorescent Protein from Scolionema suvaense
title_sort frame-insensitive expression cloning of fluorescent protein from scolionema suvaense
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5855593/
https://www.ncbi.nlm.nih.gov/pubmed/29373508
http://dx.doi.org/10.3390/ijms19020371
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