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A One Pot, One Step, Precision Cloning Method with High Throughput Capability
by
Kandzia, Romy
, Marillonnet, Sylvestre
, Engler, Carola
in
Amino acids
/ Analysis
/ Arabidopsis - genetics
/ Base Sequence
/ Biological products
/ Biotechnology
/ Biotechnology/Plant Biotechnology
/ Cloning
/ Cloning, Molecular - methods
/ Deoxyribonucleic acid
/ Design
/ DNA
/ DNA Restriction Enzymes - metabolism
/ Efficiency
/ Enzymes
/ Escherichia coli - genetics
/ Fragments
/ Gene expression
/ Genes
/ Genes, Plant
/ Genetic engineering
/ Genetic Vectors - genetics
/ Kanamycin Resistance - genetics
/ Methods
/ Models, Biological
/ Molecular Biology
/ Molecular Sequence Data
/ Mutagenesis
/ Plants, Genetically Modified
/ Plasmids
/ Polymerase chain reaction
/ Proteomics
/ Recombination
/ Sensitivity and Specificity
/ Strategy
/ Time Factors
/ Trends
/ Vectors (Biology)
2008
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A One Pot, One Step, Precision Cloning Method with High Throughput Capability
by
Kandzia, Romy
, Marillonnet, Sylvestre
, Engler, Carola
in
Amino acids
/ Analysis
/ Arabidopsis - genetics
/ Base Sequence
/ Biological products
/ Biotechnology
/ Biotechnology/Plant Biotechnology
/ Cloning
/ Cloning, Molecular - methods
/ Deoxyribonucleic acid
/ Design
/ DNA
/ DNA Restriction Enzymes - metabolism
/ Efficiency
/ Enzymes
/ Escherichia coli - genetics
/ Fragments
/ Gene expression
/ Genes
/ Genes, Plant
/ Genetic engineering
/ Genetic Vectors - genetics
/ Kanamycin Resistance - genetics
/ Methods
/ Models, Biological
/ Molecular Biology
/ Molecular Sequence Data
/ Mutagenesis
/ Plants, Genetically Modified
/ Plasmids
/ Polymerase chain reaction
/ Proteomics
/ Recombination
/ Sensitivity and Specificity
/ Strategy
/ Time Factors
/ Trends
/ Vectors (Biology)
2008
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Do you wish to request the book?
A One Pot, One Step, Precision Cloning Method with High Throughput Capability
by
Kandzia, Romy
, Marillonnet, Sylvestre
, Engler, Carola
in
Amino acids
/ Analysis
/ Arabidopsis - genetics
/ Base Sequence
/ Biological products
/ Biotechnology
/ Biotechnology/Plant Biotechnology
/ Cloning
/ Cloning, Molecular - methods
/ Deoxyribonucleic acid
/ Design
/ DNA
/ DNA Restriction Enzymes - metabolism
/ Efficiency
/ Enzymes
/ Escherichia coli - genetics
/ Fragments
/ Gene expression
/ Genes
/ Genes, Plant
/ Genetic engineering
/ Genetic Vectors - genetics
/ Kanamycin Resistance - genetics
/ Methods
/ Models, Biological
/ Molecular Biology
/ Molecular Sequence Data
/ Mutagenesis
/ Plants, Genetically Modified
/ Plasmids
/ Polymerase chain reaction
/ Proteomics
/ Recombination
/ Sensitivity and Specificity
/ Strategy
/ Time Factors
/ Trends
/ Vectors (Biology)
2008
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A One Pot, One Step, Precision Cloning Method with High Throughput Capability
Journal Article
A One Pot, One Step, Precision Cloning Method with High Throughput Capability
2008
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Overview
Current cloning technologies based on site-specific recombination are efficient, simple to use, and flexible, but have the drawback of leaving recombination site sequences in the final construct, adding an extra 8 to 13 amino acids to the expressed protein. We have devised a simple and rapid subcloning strategy to transfer any DNA fragment of interest from an entry clone into an expression vector, without this shortcoming. The strategy is based on the use of type IIs restriction enzymes, which cut outside of their recognition sequence. With proper design of the cleavage sites, two fragments cut by type IIs restriction enzymes can be ligated into a product lacking the original restriction site. Based on this property, a cloning strategy called 'Golden Gate' cloning was devised that allows to obtain in one tube and one step close to one hundred percent correct recombinant plasmids after just a 5 minute restriction-ligation. This method is therefore as efficient as currently used recombination-based cloning technologies but yields recombinant plasmids that do not contain unwanted sequences in the final construct, thus providing precision for this fundamental process of genetic manipulation.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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