The precise assembly of specific DNA sequences is a critical technique in molecular biology. Traditional cloning techniques use restriction enzymes and ligation of DNA in vitro, which can be hampered by a lack of appropriate restriction-sites and inefficient enzymatic steps. A number of ligation-independent cloning techniques have been developed, including polymerase incomplete primer extension (PIPE) cloning, sequence and ligation-independent cloning (SLIC), and overlap extension cloning (OEC). These strategies rely on the generation of complementary overhangs by DNA polymerase, without requiring specific restriction sites or ligation, and achieve high efficiencies in a fraction of the time at low cost. Here, we outline and optimise these ...
<div><p>Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type II...
A new simple scheme for constructing recombinant vectors that does not require any restriction enzym...
This study presents a seamless, efficient and restriction/ligation-independent cloning strategy for ...
<div><p>The precise assembly of specific DNA sequences is a critical technique in molecular biology....
The precise assembly of specific DNA sequences is a critical technique in molecular biology. Traditi...
<p>(A) In PIPE, incomplete extension during PCR generates 3′-recessed ends. In SLIC, purified PCR pr...
Significant innovations in molecular biology methods have vastly improved the speed and efficiency o...
A couple of DNA ligation-independent cloning (LIC) methods have been reported to meet various requir...
We have developed an efficient strategy for cloning of PCR products that contain an unknown region f...
Abstract Introduction To overcome the shortcomings of traditional cloning methods, ligasefree method...
A couple of DNA ligation-independent cloning (LIC) methods have been reported to meet various requir...
For many applications it is often necessary to subclone PCR products into plasmid vectors. Many stra...
Many proteomics initiatives require the production of large collections of expression clones. While ...
Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type IIs restri...
Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type IIs restri...
<div><p>Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type II...
A new simple scheme for constructing recombinant vectors that does not require any restriction enzym...
This study presents a seamless, efficient and restriction/ligation-independent cloning strategy for ...
<div><p>The precise assembly of specific DNA sequences is a critical technique in molecular biology....
The precise assembly of specific DNA sequences is a critical technique in molecular biology. Traditi...
<p>(A) In PIPE, incomplete extension during PCR generates 3′-recessed ends. In SLIC, purified PCR pr...
Significant innovations in molecular biology methods have vastly improved the speed and efficiency o...
A couple of DNA ligation-independent cloning (LIC) methods have been reported to meet various requir...
We have developed an efficient strategy for cloning of PCR products that contain an unknown region f...
Abstract Introduction To overcome the shortcomings of traditional cloning methods, ligasefree method...
A couple of DNA ligation-independent cloning (LIC) methods have been reported to meet various requir...
For many applications it is often necessary to subclone PCR products into plasmid vectors. Many stra...
Many proteomics initiatives require the production of large collections of expression clones. While ...
Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type IIs restri...
Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type IIs restri...
<div><p>Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type II...
A new simple scheme for constructing recombinant vectors that does not require any restriction enzym...
This study presents a seamless, efficient and restriction/ligation-independent cloning strategy for ...