Title of article :
Engineering of Large Numbers of Highly Specific Homing Endonucleases that Induce Recombination on Novel DNA Targets
Author/Authors :
Sylvain Arnould، نويسنده , , Patrick Chames، نويسنده , , Christophe Perez، نويسنده , , Emmanuel Lacroix، نويسنده , , Aymeric Duclert، نويسنده , , Jean-Charles Epinat، نويسنده , , François Stricher، نويسنده , , Anne-Sophie Petit، نويسنده , , Amélie Patin، نويسنده , , Sophie Guillier، نويسنده , , Sandra Rolland، نويسنده , , Jesus Prieto، نويسنده , , Francisco J. Blanco، نويسنده , , Jer?nimo Bravo، نويسنده , , Guillermo Mo، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
16
From page :
443
To page :
458
Abstract :
The last decade has seen the emergence of a universal method for precise and efficient genome engineering. This method relies on the use of sequence-specific endonucleases such as homing endonucleases. The structures of several of these proteins are known, allowing for site-directed mutagenesis of residues essential for DNA binding. Here, we show that a semi-rational approach can be used to derive hundreds of novel proteins from I-CreI, a homing endonuclease from the LAGLIDADG family. These novel endonucleases display a wide range of cleavage patterns in yeast and mammalian cells that in most cases are highly specific and distinct from I-CreI. Second, rules for protein/DNA interaction can be inferred from statistical analysis. Third, novel endonucleases can be combined to create heterodimeric protein species, thereby greatly enhancing the number of potential targets. These results describe a straightforward approach for engineering novel endonucleases with tailored specificities, while preserving the activity and specificity of natural homing endonucleases, and thereby deliver new tools for genome engineering.
Keywords :
I-CreI , homing endonucleases , Recombination , Specificity , protein engineering
Journal title :
Journal of Molecular Biology
Serial Year :
2006
Journal title :
Journal of Molecular Biology
Record number :
1245856
Link To Document :
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