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Engineering a rare-cutting restriction enzyme: genetic screening and selection of NotI variants

Restriction endonucleases (REases) with 8-base specificity are rare specimens in nature. NotI from Nocardia otitidis-caviarum (recognition sequence 5′-GCGGCCGC-3′) has been cloned, thus allowing for mutagenesis and screening for enzymes with altered 8-base recognition and cleavage activity. Variants...

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Autores principales: Samuelson, James C., Morgan, Richard D., Benner, Jack S., Claus, Toby E., Packard, Stephanie L., Xu, Shuang-yong
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1360745/
https://www.ncbi.nlm.nih.gov/pubmed/16456032
http://dx.doi.org/10.1093/nar/gkj483
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author Samuelson, James C.
Morgan, Richard D.
Benner, Jack S.
Claus, Toby E.
Packard, Stephanie L.
Xu, Shuang-yong
author_facet Samuelson, James C.
Morgan, Richard D.
Benner, Jack S.
Claus, Toby E.
Packard, Stephanie L.
Xu, Shuang-yong
author_sort Samuelson, James C.
collection PubMed
description Restriction endonucleases (REases) with 8-base specificity are rare specimens in nature. NotI from Nocardia otitidis-caviarum (recognition sequence 5′-GCGGCCGC-3′) has been cloned, thus allowing for mutagenesis and screening for enzymes with altered 8-base recognition and cleavage activity. Variants possessing altered specificity have been isolated by the application of two genetic methods. In step 1, variant E156K was isolated by its ability to induce DNA-damage in an indicator strain expressing M.EagI (to protect 5′-NCGGCCGN-3′ sites). In step 2, the E156K allele was mutagenized with the objective of increasing enzyme activity towards the alternative substrate site: 5′-GCTGCCGC-3′. In this procedure, clones of interest were selected by their ability to eliminate a conditionally toxic substrate vector and induce the SOS response. Thus, specific DNA cleavage was linked to cell survival. The secondary substitutions M91V, F157C and V348M were each found to have a positive effect on specific activity when paired with E156K. For example, variant M91V/E156K cleaves 5′-GCTGCCGC-3′ with a specific activity of 8.2 × 10(4) U/mg, a 32-fold increase over variant E156K. A comprehensive analysis indicates that the cleavage specificity of M91V/E156K is relaxed to a small set of 8 bp substrates while retaining activity towards the NotI sequence.
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spelling pubmed-13607452006-02-06 Engineering a rare-cutting restriction enzyme: genetic screening and selection of NotI variants Samuelson, James C. Morgan, Richard D. Benner, Jack S. Claus, Toby E. Packard, Stephanie L. Xu, Shuang-yong Nucleic Acids Res Article Restriction endonucleases (REases) with 8-base specificity are rare specimens in nature. NotI from Nocardia otitidis-caviarum (recognition sequence 5′-GCGGCCGC-3′) has been cloned, thus allowing for mutagenesis and screening for enzymes with altered 8-base recognition and cleavage activity. Variants possessing altered specificity have been isolated by the application of two genetic methods. In step 1, variant E156K was isolated by its ability to induce DNA-damage in an indicator strain expressing M.EagI (to protect 5′-NCGGCCGN-3′ sites). In step 2, the E156K allele was mutagenized with the objective of increasing enzyme activity towards the alternative substrate site: 5′-GCTGCCGC-3′. In this procedure, clones of interest were selected by their ability to eliminate a conditionally toxic substrate vector and induce the SOS response. Thus, specific DNA cleavage was linked to cell survival. The secondary substitutions M91V, F157C and V348M were each found to have a positive effect on specific activity when paired with E156K. For example, variant M91V/E156K cleaves 5′-GCTGCCGC-3′ with a specific activity of 8.2 × 10(4) U/mg, a 32-fold increase over variant E156K. A comprehensive analysis indicates that the cleavage specificity of M91V/E156K is relaxed to a small set of 8 bp substrates while retaining activity towards the NotI sequence. Oxford University Press 2006 2006-02-02 /pmc/articles/PMC1360745/ /pubmed/16456032 http://dx.doi.org/10.1093/nar/gkj483 Text en © The Author 2006. Published by Oxford University Press. All rights reserved
spellingShingle Article
Samuelson, James C.
Morgan, Richard D.
Benner, Jack S.
Claus, Toby E.
Packard, Stephanie L.
Xu, Shuang-yong
Engineering a rare-cutting restriction enzyme: genetic screening and selection of NotI variants
title Engineering a rare-cutting restriction enzyme: genetic screening and selection of NotI variants
title_full Engineering a rare-cutting restriction enzyme: genetic screening and selection of NotI variants
title_fullStr Engineering a rare-cutting restriction enzyme: genetic screening and selection of NotI variants
title_full_unstemmed Engineering a rare-cutting restriction enzyme: genetic screening and selection of NotI variants
title_short Engineering a rare-cutting restriction enzyme: genetic screening and selection of NotI variants
title_sort engineering a rare-cutting restriction enzyme: genetic screening and selection of noti variants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1360745/
https://www.ncbi.nlm.nih.gov/pubmed/16456032
http://dx.doi.org/10.1093/nar/gkj483
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