Abstract Background The combined use of restriction enzymes with PCR has revolutionized molecular cloning, but is inherently restricted by the content of the manipulated DNA sequences. Uracil-excision based cloning is ligase and sequence independent and allows seamless fusion of multiple DNA sequences in simple one-tube reactions, with higher accuracy than overlapping PCR. Results Here, the addition of a highly efficient DNA polymerase and a low-background-, large-insertion- compatible site-directed mutagenesis protocol is described, largely expanding the versatility of uracil-excision DNA engineering. Conclusions The different uracil-excision based molecular tools that have been developed in an open-source fashion, constitute a comprehensi...
DNA polymerases are involved in all DNA synthesis occurring in nature. Furthermore, DNA polymerases ...
The polymerase chain reaction (PCR) is the technique of choice used to obtain DNA for cloning, becau...
AbstractBackground: We were interested in developing a protocol for cleaving large DNAs specifically...
Simple and reliable DNA editing by uracil excision (a.k.a. USER cloning) has been described by sever...
Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type IIs restri...
Significant innovations in molecular biology methods have vastly improved the speed and efficiency o...
Commonly used methods for site-directed DNA mutagenesis require copying the entire target plasmid. T...
We show that uracil DNA glycosylase from E. coli excises uracil residues from the ends of double str...
<div><p>Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type II...
<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...
AbstractMethods for introducing multiple site-directed mutations are important experimental tools in...
Restriction enzymes are essential tools for recombinant DNA technology that have revolutionized mode...
AbstractBackground: Modern biological research is highly dependent upon recombinant DNA technology. ...
The precise assembly of specific DNA sequences is a critical technique in molecular biology. Traditi...
DNA polymerases are involved in all DNA synthesis occurring in nature. Furthermore, DNA polymerases ...
The polymerase chain reaction (PCR) is the technique of choice used to obtain DNA for cloning, becau...
AbstractBackground: We were interested in developing a protocol for cleaving large DNAs specifically...
Simple and reliable DNA editing by uracil excision (a.k.a. USER cloning) has been described by sever...
Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type IIs restri...
Significant innovations in molecular biology methods have vastly improved the speed and efficiency o...
Commonly used methods for site-directed DNA mutagenesis require copying the entire target plasmid. T...
We show that uracil DNA glycosylase from E. coli excises uracil residues from the ends of double str...
<div><p>Herein, we describe a novel cloning strategy for PCR-amplified DNA which employs the type II...
<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...
AbstractMethods for introducing multiple site-directed mutations are important experimental tools in...
Restriction enzymes are essential tools for recombinant DNA technology that have revolutionized mode...
AbstractBackground: Modern biological research is highly dependent upon recombinant DNA technology. ...
The precise assembly of specific DNA sequences is a critical technique in molecular biology. Traditi...
DNA polymerases are involved in all DNA synthesis occurring in nature. Furthermore, DNA polymerases ...
The polymerase chain reaction (PCR) is the technique of choice used to obtain DNA for cloning, becau...
AbstractBackground: We were interested in developing a protocol for cleaving large DNAs specifically...