Commonly used methods for site-directed DNA mutagenesis require copying the entire target plasmid. These methods allow relatively easy modification of DNA sequences in small plasmids but become less efficient and faithful for large plasmids, necessitating full sequence verification. Introduction of mutations in larger plasmids requires subcloning, a slow and labor-intensive process, especially for multiple mutations. We have developed an efficient DNA mutagenesis technique, UnRestricted Mutagenesis and Cloning (URMAC) that replaces subcloning steps with quick biochemical reactions. URMAC does not suffer from plasmid size constraints and allows simultaneous introduction of multiple mutations. URMAC involves manipulation of only the mutagenes...
Site-specific mutagenesis at one or multiple sites has recently become an invaluable strategy in fun...
Site-specific mutagenesis at one or multiple sites has recently become an invaluable strategy in fun...
Site directed mutagenesis of whole plasmids is a simple way to create slightly different variations ...
Commonly used methods for site-directed DNA mutagenesis require copying the entire target plasmid. T...
We describe a new rapid and efficient polymerase chain reaction (PCR)-based site-directed mutagenesi...
Mutagenesis is an important tool to study gene regulation, model disease-causing mutations and fo...
Background: Mutagenesis plays an essential role in molecular biology and biochemistry. It has also b...
The technique of site-directed mutagenesis (SDM) is widely used in molecular biology to introduce mu...
Existing methods for site-directed plasmid mutagenesis are restrained by the small spectrum of modif...
AbstractBackground: Modern biological research is highly dependent upon recombinant DNA technology. ...
Minimal plasmids play an essential role in many intermediate steps in molecular biology. For example...
Minimal plasmids play an essential role in many intermediate steps in molecular biology. For example...
AbstractWe have developed an efficient method for the simultaneous introduction of up to three mutat...
AbstractMethods for introducing multiple site-directed mutations are important experimental tools in...
Background Molecular cloning is an essential step in biological engineering. Methods involving me...
Site-specific mutagenesis at one or multiple sites has recently become an invaluable strategy in fun...
Site-specific mutagenesis at one or multiple sites has recently become an invaluable strategy in fun...
Site directed mutagenesis of whole plasmids is a simple way to create slightly different variations ...
Commonly used methods for site-directed DNA mutagenesis require copying the entire target plasmid. T...
We describe a new rapid and efficient polymerase chain reaction (PCR)-based site-directed mutagenesi...
Mutagenesis is an important tool to study gene regulation, model disease-causing mutations and fo...
Background: Mutagenesis plays an essential role in molecular biology and biochemistry. It has also b...
The technique of site-directed mutagenesis (SDM) is widely used in molecular biology to introduce mu...
Existing methods for site-directed plasmid mutagenesis are restrained by the small spectrum of modif...
AbstractBackground: Modern biological research is highly dependent upon recombinant DNA technology. ...
Minimal plasmids play an essential role in many intermediate steps in molecular biology. For example...
Minimal plasmids play an essential role in many intermediate steps in molecular biology. For example...
AbstractWe have developed an efficient method for the simultaneous introduction of up to three mutat...
AbstractMethods for introducing multiple site-directed mutations are important experimental tools in...
Background Molecular cloning is an essential step in biological engineering. Methods involving me...
Site-specific mutagenesis at one or multiple sites has recently become an invaluable strategy in fun...
Site-specific mutagenesis at one or multiple sites has recently become an invaluable strategy in fun...
Site directed mutagenesis of whole plasmids is a simple way to create slightly different variations ...