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Designing DNA nanostar hydrogels for sequence-specific degradation and antibody release.
Palombo G +5 more
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Angewandte Chemie International Edition in English, 1978
AbstractRestriction endonucleases are enzymes commonly found in bacteria which can fragment DNA. Cleavage of the DNA molecule takes place after recognition of a nucleotide sequence which is specific for each restriction endonuclease. Some of the enzymes split the DNA within the recognition sequence. This property allows these enzymes to be used for the
Werner Arber
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AbstractRestriction endonucleases are enzymes commonly found in bacteria which can fragment DNA. Cleavage of the DNA molecule takes place after recognition of a nucleotide sequence which is specific for each restriction endonuclease. Some of the enzymes split the DNA within the recognition sequence. This property allows these enzymes to be used for the
Werner Arber
exaly +3 more sources
The endonuclease IV family of apurinic/apyrimidinic endonucleases
Mutation Research - Reviews in Mutation Research, 2010Apurinic/apyrimidinic (AP) endonucleases are versatile DNA repair enzymes that possess a variety of nucleolytic activities, including endonuclease activity at AP sites, 3' phosphodiesterase activity that can remove a variety of ligation-blocking lesions from the 3' end of DNA, endonuclease activity on oxidative DNA lesions, and 3' to 5' exonuclease ...
James M Daley, Dindial Ramotar
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Structural and Functional Characteristics of Homing Endonucleases
Mobile genetic elements constitute a remarkably diverse group of nonessential selfish genes that provide no apparent function to the host. These selfish genes have been implicated in host extinction, speciation and architecture of genetic systems. Homing
Kalappa Muniyappa
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DNase I Induces Other Endonucleases in Kidney Tubular Epithelial Cells by Its DNA-Degrading Activity
Endonuclease-mediated DNA fragmentation is both an immediate cause and a result of apoptosis and of all other types of irreversible cell death after injury.
Alexei G Basnakian +2 more
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Current Protocols in Molecular Biology, 1989
AbstractReaction conditions for numerous ensonucleases are detailed in this unit along with discussions of potential applications. Specific enzymes include BAL 31 nuclease, S1 nuclease, mung bean nuclease, micrococcal nuclease and DNase I.
S, Tabor, K, Struhl
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AbstractReaction conditions for numerous ensonucleases are detailed in this unit along with discussions of potential applications. Specific enzymes include BAL 31 nuclease, S1 nuclease, mung bean nuclease, micrococcal nuclease and DNase I.
S, Tabor, K, Struhl
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Plant Molecular Biology, 2000
Programmed cell death (PCD) involves hydrolysis of genomic DNA, which must be catalyzed by endonuclease(s) capable of digesting dsDNA. Plants have two major classes of endonucleases active towards dsDNA, Zn2+-dependent endonuclease and Ca2+-dependent endonuclease.
M, Sugiyama +3 more
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Programmed cell death (PCD) involves hydrolysis of genomic DNA, which must be catalyzed by endonuclease(s) capable of digesting dsDNA. Plants have two major classes of endonucleases active towards dsDNA, Zn2+-dependent endonuclease and Ca2+-dependent endonuclease.
M, Sugiyama +3 more
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CRC Critical Reviews in Biochemistry, 1976
This review provides a comprehensive account of the current status of the biology and biochemistry of restriction endonucleases. Both Class I and Class II restriction endonucleases will be considered. However, emphasis will be placed on the Class II group, which recognizes and cleaves a specific duplex DNA sequence.
Richard J. Roberts, Kenneth Murray
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This review provides a comprehensive account of the current status of the biology and biochemistry of restriction endonucleases. Both Class I and Class II restriction endonucleases will be considered. However, emphasis will be placed on the Class II group, which recognizes and cleaves a specific duplex DNA sequence.
Richard J. Roberts, Kenneth Murray
openaire +2 more sources

