Ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.

Direct cloning of PCR fragments by TA cloning or blunt end ligation are two simple methods which would greatly benefit high-throughput (HTP) cloning constructions if the efficiency can be improved. In this study, we have developed a ribosomal binding site (RBS) switching strategy for direct cloning...

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Main Authors: Yangbo Hu, Lipeng Feng, Yunlong Li, Yong Zhang, Pei Lu, Simon Rayner, Shiyun Chen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3503710?pdf=render
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spelling doaj-8a05f0f8f2e44298aad71f2d848107a92020-11-24T21:20:03ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01711e5014210.1371/journal.pone.0050142Ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.Yangbo HuLipeng FengYunlong LiYong ZhangPei LuSimon RaynerShiyun ChenDirect cloning of PCR fragments by TA cloning or blunt end ligation are two simple methods which would greatly benefit high-throughput (HTP) cloning constructions if the efficiency can be improved. In this study, we have developed a ribosomal binding site (RBS) switching strategy for direct cloning of PCR fragments. RBS is an A/G rich region upstream of the translational start codon and is essential for gene expression. Change from A/G to T/C in the RBS blocks its activity and thereby abolishes gene expression. Based on this property, we introduced an inactive RBS upstream of a selectable marker gene, and designed a fragment insertion site within this inactive RBS. Forward and reverse insertions of specifically tailed fragments will respectively form an active and inactive RBS, thus all background from vector self-ligation and fragment reverse insertions will be eliminated due to the non-expression of the marker gene. The effectiveness of our strategy for TA cloning and blunt end ligation are confirmed. Application of this strategy to gene over-expression, a bacterial two-hybrid system, a bacterial one-hybrid system, and promoter bank construction are also verified. The advantages of this simple procedure, together with its low cost and high efficiency, makes our strategy extremely useful in HTP cloning constructions.http://europepmc.org/articles/PMC3503710?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yangbo Hu
Lipeng Feng
Yunlong Li
Yong Zhang
Pei Lu
Simon Rayner
Shiyun Chen
spellingShingle Yangbo Hu
Lipeng Feng
Yunlong Li
Yong Zhang
Pei Lu
Simon Rayner
Shiyun Chen
Ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.
PLoS ONE
author_facet Yangbo Hu
Lipeng Feng
Yunlong Li
Yong Zhang
Pei Lu
Simon Rayner
Shiyun Chen
author_sort Yangbo Hu
title Ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.
title_short Ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.
title_full Ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.
title_fullStr Ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.
title_full_unstemmed Ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.
title_sort ribosomal binding site switching: an effective strategy for high-throughput cloning constructions.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Direct cloning of PCR fragments by TA cloning or blunt end ligation are two simple methods which would greatly benefit high-throughput (HTP) cloning constructions if the efficiency can be improved. In this study, we have developed a ribosomal binding site (RBS) switching strategy for direct cloning of PCR fragments. RBS is an A/G rich region upstream of the translational start codon and is essential for gene expression. Change from A/G to T/C in the RBS blocks its activity and thereby abolishes gene expression. Based on this property, we introduced an inactive RBS upstream of a selectable marker gene, and designed a fragment insertion site within this inactive RBS. Forward and reverse insertions of specifically tailed fragments will respectively form an active and inactive RBS, thus all background from vector self-ligation and fragment reverse insertions will be eliminated due to the non-expression of the marker gene. The effectiveness of our strategy for TA cloning and blunt end ligation are confirmed. Application of this strategy to gene over-expression, a bacterial two-hybrid system, a bacterial one-hybrid system, and promoter bank construction are also verified. The advantages of this simple procedure, together with its low cost and high efficiency, makes our strategy extremely useful in HTP cloning constructions.
url http://europepmc.org/articles/PMC3503710?pdf=render
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