Directed evolution of restriction endonuclease BstYI to achieve increased substrate specificity

被引:40
作者
Samuelson, JC [1 ]
Xu, SY [1 ]
机构
[1] New England Biolabs Inc, Beverly, MA 01915 USA
关键词
BstYI; restriction endonuclease; DNA methyltransferase; endonuclease substrate specificity; protein evolution;
D O I
10.1016/S0022-2836(02)00343-1
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Restriction endonucleases have proven to be especially resistant to engineering altered substrate specificity, in part, due to the requirement of a cognate DNA methyltransferase for cellular DNA protection. The thermophilic restriction endonuclease BstYI recognizes and cleaves all hexanucleotide sequences described by 5'-R(1)GATCY-3' (where R = A or G and Y = C or T). The recognition of a degenerate sequence is a relatively common feature of the more than 3000 characterized restriction endonucleases. However, very little is known concerning substrate recognition by such an enzyme. Our objective was to investigate the substrate specificity of BstYI by attempting to increase the specificity to recognition of only AGATCT. By a novel genetic selection/screening process, two BstYI variants were isolated with a preference for AGATCT cleavage. A fundamental element of the selection process is modification of the Escherichia coli host genomic DNA by the BglII N4-cytosine methyltransferase to protect AGATCT sites. The amino acid substitutions resulting in a partial change of specificity were identified and combined into one superior variant designated NN1. BstYI variant NN1 displays a 12-fold preference for cleavage of AGATCT over AGATCC or GGATCT. Moreover, cleavage of the GGATCC sequence is no longer detected. This study provides further evidence that laboratory evolution strategies offer a powerful alternative to structure-guided protein design. (C) 2002 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:673 / 683
页数:11
相关论文
共 32 条
[1]   CHANGING THE HYDROGEN-BONDING POTENTIAL IN THE DNA-BINDING SITE OF ECORI BY SITE-DIRECTED MUTAGENESIS DRASTICALLY REDUCES THE ENZYMATIC-ACTIVITY, NOT, HOWEVER, THE PREFERENCE OF THIS RESTRICTION ENDONUCLEASE FOR CLEAVAGE WITHIN THE SITE -GAATTC- [J].
ALVES, J ;
RUTER, T ;
GEIGER, R ;
FLIESS, A ;
MAASS, G ;
PINGOUD, A .
BIOCHEMISTRY, 1989, 28 (06) :2678-2684
[2]   Cloning and characterization of the BglII restriction-modification system reveals a possible evolutionary footprint [J].
Anton, BP ;
Heiter, DF ;
Benner, JS ;
Hess, EJ ;
Greenough, L ;
Moran, LS ;
Slatko, BE ;
Brooks, JE .
GENE, 1997, 187 (01) :19-27
[3]  
Cadwell R C, 1992, PCR Methods Appl, V2, P28, DOI 10.1101/gr.2.1.28
[4]   DIRECT SELECTION OF BINDING PROFICIENT CATALYTIC DEFICIENT VARIANTS OF BAMHI ENDONUCLEASE [J].
DORNER, LF ;
SCHILDKRAUT, I .
NUCLEIC ACIDS RESEARCH, 1994, 22 (06) :1068-1074
[5]   Genetic analysis of the base-specific contacts of BamHI restriction endonuclease [J].
Dorner, LF ;
Bitinaite, J ;
Whitaker, RD ;
Schildkraut, I .
JOURNAL OF MOLECULAR BIOLOGY, 1999, 285 (04) :1515-1523
[6]   SATURATION MUTAGENESIS OF HIS(114) OF ECORI REVEALS RELAXED-SPECIFICITY MUTANTS [J].
FLORES, H ;
OSUNA, J ;
HEITMAN, J ;
SOBERON, X .
GENE, 1995, 157 (1-2) :295-301
[7]   THE ENDO-BLUE METHOD FOR DIRECT CLONING OF RESTRICTION-ENDONUCLEASE GENES IN ESCHERICHIA-COLI [J].
FOMENKOV, A ;
XIAO, JP ;
DILA, D ;
RALEIGH, E ;
XU, SY .
NUCLEIC ACIDS RESEARCH, 1994, 22 (12) :2399-2403
[8]   SOS INDUCTION AS AN INVIVO ASSAY OF ENZYME-DNA INTERACTIONS [J].
HEITMAN, J ;
MODEL, P .
GENE, 1991, 103 (01) :1-9
[9]   SUBSTRATE RECOGNITION BY THE ECORI ENDONUCLEASE [J].
HEITMAN, J ;
MODEL, P .
PROTEINS-STRUCTURE FUNCTION AND GENETICS, 1990, 7 (02) :185-197
[10]   MUTANTS OF THE ECORI ENDONUCLEASE WITH PROMISCUOUS SUBSTRATE-SPECIFICITY IMPLICATE RESIDUES INVOLVED IN SUBSTRATE RECOGNITION [J].
HEITMAN, J ;
MODEL, P .
EMBO JOURNAL, 1990, 9 (10) :3369-3378