Cloning of Large Segments of Exogenous DNA into Yeast by Means of Artificial Chromosome Vectors
Science · 1987 · 1.5K citations · 45 references
Artificial Chromosome VectorsEngineeringExogenous DnaGeneticsDna AnalysisMolecular BiologyMolecular GeneticsLarge SegmentsYeastDna ComputingCloningGene TransferDna SequencingSource DnaDna ReplicationComplex Dna SourcesChromosomal RearrangementFungal Cell FactoryFaithful ReplicasSynthetic BiologyGenetic EngineeringMicrobiologyRecombination DynamicMedicineGenome Editing
Fragments of exogenous DNA that range in size up to several hundred kilobase pairs have been cloned into yeast by ligating them to vector sequences that allow their propagation as linear artificial chromosomes. Individual clones of yeast and human DNA that have been analyzed by pulsed-field gel electrophoresis appear to represent faithful replicas of the source DNA. The efficiency with which clones can be generated is high enough to allow the construction of comprehensive libraries from the genomes of higher organisms. By offering a tenfold increase in the size of the DNA molecules that can be cloned into a microbial host, this system addresses a major gap in existing experimental methods for analyzing complex DNA sources.
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George M. Church, W Gilbert · Proceedings of the National Academy of Sciences · 1984
8.2K citations
A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity
Analytical Biochemistry · 1984
Nucleic Acid ChemistryHigh Specific ActivityNatural Sciences+6
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Somatic generation of antibody diversity
Susumu Tonegawa · Nature · 1983
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Somatic generation of antibody diversity.
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Separation of yeast chromosome-sized DNAs by pulsed field gradient gel electrophoresis
David C. Schwartz, Charles R. Cantor · Cell · 1984
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