For analyzing protein function, protein dynamics, or protein-protein interactions, the use of chimeric proteins has become an indispensable tool. The generation of DNA constructs coding for such fused proteins can, however, be a tedious process. Currently used strategies often make use of available endonuclease sites, leading to limitations in the choice of the site of fusion between two genes and problems in maintaining protein secondary structure. We have developed a cloning strategy to get around these disadvantages that is based on a single round of PCR amplification followed by antibiotic-resistant gene complementation. (C) 2008 Elsevier Inc. All rights reserved.</p
Classical analytical biotechnology typically requires hundreds of thousands of molecules as substrat...
Ted initially to sequence analysis of the synthesized product to detect nucleotide errors. Error cor...
We have developed a simple and general method that allows for the facile recombination of distantly ...
For analyzing protein function, protein dynamics, or protein-protein interactions, the use of chimer...
A general method is described for creating chimeric pro-teins by transposition of subdomain-sized ge...
Chimera construction between different proteins is a useful method for investigating protein structu...
Functional genomics requires vector construction for pro-tein expression and functional characteriza...
Recombination of distantly related and nonrelated genes is difficult using traditional PCR‐based tec...
Genetic information is coded in DNA found in the nucleus and mitochondria of animal cells and chloro...
There is an increasing demand for efficient and effective methods to engineer protein variants for i...
Gene-swap cloning strategy. We developed a PCR-based technique, dubbed “Self-Assembly Cloning”, that...
New bioactive proteins need to be screened from various microorganisms for the increasing need for i...
The current study describes multiple-overlap-extension PCR (MOE-PCR) as a simple and effective appro...
In vitro polymerase chain reaction (PCR)-based recombination methods are used to shuffle segments fr...
We report here a PCR-based cloning methodology that requires no post-PCR modifications such as restr...
Classical analytical biotechnology typically requires hundreds of thousands of molecules as substrat...
Ted initially to sequence analysis of the synthesized product to detect nucleotide errors. Error cor...
We have developed a simple and general method that allows for the facile recombination of distantly ...
For analyzing protein function, protein dynamics, or protein-protein interactions, the use of chimer...
A general method is described for creating chimeric pro-teins by transposition of subdomain-sized ge...
Chimera construction between different proteins is a useful method for investigating protein structu...
Functional genomics requires vector construction for pro-tein expression and functional characteriza...
Recombination of distantly related and nonrelated genes is difficult using traditional PCR‐based tec...
Genetic information is coded in DNA found in the nucleus and mitochondria of animal cells and chloro...
There is an increasing demand for efficient and effective methods to engineer protein variants for i...
Gene-swap cloning strategy. We developed a PCR-based technique, dubbed “Self-Assembly Cloning”, that...
New bioactive proteins need to be screened from various microorganisms for the increasing need for i...
The current study describes multiple-overlap-extension PCR (MOE-PCR) as a simple and effective appro...
In vitro polymerase chain reaction (PCR)-based recombination methods are used to shuffle segments fr...
We report here a PCR-based cloning methodology that requires no post-PCR modifications such as restr...
Classical analytical biotechnology typically requires hundreds of thousands of molecules as substrat...
Ted initially to sequence analysis of the synthesized product to detect nucleotide errors. Error cor...
We have developed a simple and general method that allows for the facile recombination of distantly ...