Directed evolution of nucleotide libraries using recombination or mutagenesis is an important technique for customizing catalytic or biophysical traits of proteins. Conventional directed evolution methods, however, suffer from cumbersome digestion and ligation steps. Here, we describe a simple method to increase nucleotide diversity using single-stranded DNA (ssDNA) as a starting template. An initial PCR amplification using phosphorylated primers with overlapping regions followed by treatment with lambda exonuclease generates ssDNA templates that can then be annealed via the overlap regions. Double-stranded DNA (dsDNA) is then generated through extension with Klenow fragment. To demonstrate the applicability of this methodology for directed...
The capacity to diversify genetic codes advances our ability to understand and engineer biological s...
Directed molecular evolution and combinatorial methodologies are playing an increasingly important r...
Many experiments require a fast and cost-effective method to monitor nucleic acid sequence diversity...
Directed evolution of nucleotide libraries using recombination or mutagenesis is an important techni...
In vitro mutagenesis methods have revolutionized biological research and the biotechnology industry....
10 pags, 7 figs, 2 tabsProtein engineering is currently performed either by rational design, focusin...
DNA shuffling is widely used for optimizing complex properties contained within DNA and proteins. De...
DNA shuffling is widely used for optimizing complex properties contained within DNA and proteins. De...
A simple and efficient method for in vitro mutagenesis and recombination of polynucleotide sequences...
DNA shuffling is widely used for optimizing complex properties contained within DNA and proteins. De...
AbstractGenetic diversity creation is a core technology in directed evolution where a high quality m...
In the quest for enhanced enzyme performance in non-natural applications, directed evolution emulate...
We have developed a simple and efficient method for in vitro mutagenesis and recombination of polynu...
The capacity to diversify genetic codes advances our ability to understand and engineer biological s...
We have developed a simple and efficient method for in vitro mutagenesis and recombination of polynu...
The capacity to diversify genetic codes advances our ability to understand and engineer biological s...
Directed molecular evolution and combinatorial methodologies are playing an increasingly important r...
Many experiments require a fast and cost-effective method to monitor nucleic acid sequence diversity...
Directed evolution of nucleotide libraries using recombination or mutagenesis is an important techni...
In vitro mutagenesis methods have revolutionized biological research and the biotechnology industry....
10 pags, 7 figs, 2 tabsProtein engineering is currently performed either by rational design, focusin...
DNA shuffling is widely used for optimizing complex properties contained within DNA and proteins. De...
DNA shuffling is widely used for optimizing complex properties contained within DNA and proteins. De...
A simple and efficient method for in vitro mutagenesis and recombination of polynucleotide sequences...
DNA shuffling is widely used for optimizing complex properties contained within DNA and proteins. De...
AbstractGenetic diversity creation is a core technology in directed evolution where a high quality m...
In the quest for enhanced enzyme performance in non-natural applications, directed evolution emulate...
We have developed a simple and efficient method for in vitro mutagenesis and recombination of polynu...
The capacity to diversify genetic codes advances our ability to understand and engineer biological s...
We have developed a simple and efficient method for in vitro mutagenesis and recombination of polynu...
The capacity to diversify genetic codes advances our ability to understand and engineer biological s...
Directed molecular evolution and combinatorial methodologies are playing an increasingly important r...
Many experiments require a fast and cost-effective method to monitor nucleic acid sequence diversity...