A 7-base-pair sequence protects DNA from exonucleolytic degradation in Lactococcus lactis

Linear DNA molecules are subject to degradation by various exonucleases in vivo unless their ends are protected. It has been demonstrated that a specific 8-bp sequence, 5'-GCTGGTGG-3', named Chi, can protect linear double-stranded DNA from the major Escherichia coli exonuclease RecBCD. Chi...

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Published inProceedings of the National Academy of Sciences - PNAS Vol. 92; no. 6; pp. 2244 - 2248
Main Authors Biswas, I. (National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD.), Maguin, E, Ehrlich, S.D, Gruss, A
Format Journal Article
LanguageEnglish
Published United States National Academy of Sciences of the United States of America 14.03.1995
National Acad Sciences
National Academy of Sciences
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Abstract Linear DNA molecules are subject to degradation by various exonucleases in vivo unless their ends are protected. It has been demonstrated that a specific 8-bp sequence, 5'-GCTGGTGG-3', named Chi, can protect linear double-stranded DNA from the major Escherichia coli exonuclease RecBCD. Chi protects linear replication products of rolling-circle plasmids from RecBCD degradation in vivo, in agreement with observations in vitro. A unique 7-bp sequence, 5'-GCGCGTG-3', is shown to protect similar replication products from degradation in Lactococcus lactis strains but not in more distantly related Gram-positive bacteria. The properties of this sequence in L. lactis correspond to those of a Chi site. Linear plasmid replication products have been detected in numerous prokaryotes, suggesting the widespread existence of short species-specific sequences that preserve linear DNA from extensive degradation by host cell exonucleases.
AbstractList Linear DNA molecules are subject to degradation by various exonucleases in vivo unless their ends are protected. It has been demonstrated that a specific 8-bp sequence, 5'-GCTGGTGG-3', named Chi, can protect linear double-stranded DNA from the major Escherichia coli exonuclease RecBCD. Chi protects linear replication products of rolling-circle plasmids from RecBCD degradation in vivo, in agreement with observations in vitro. A unique 7-bp sequence, 5'-GCGCGTG-3', is shown to protect similar replication products from degradation in Lactococcus lactis strains but not in more distantly related Gram-positive bacteria. The properties of this sequence in L. lactis correspond to those of a Chi site. Linear plasmid replication products have been detected in numerous prokaryotes, suggesting the widespread existence of short species-specific sequences that preserve linear DNA from extensive degradation by host cell exonucleases.
Linear DNA molecules are subject to degradation by various exonucleases in vivo unless their ends are protected. It has been demonstrated that a specific 8-bp sequence, 5'-GCTGGTGG-3', named Chi, can protect linear double-stranded DNA from the major Escherichia coli exonuclease RecBCD. Chi protects linear replication products of rolling-circle plasmids from RecBCD degradation in vivo, in agreement with observations in vitro. A unique 7-bp sequence, 5'-GCGCGTG-3', is shown to protect similar replication products from degradation in Lactococcus lactis strains but not in more distantly related Gram-positive bacteria. The properties of this sequence in L. lactis correspond to those of a Chi site. Linear plasmid replication products have been detected in numerous prokaryotes, suggesting the widespread existence of short species-specific sequences that preserve linear DNA from extensive degradation by host cell exonucleases.Linear DNA molecules are subject to degradation by various exonucleases in vivo unless their ends are protected. It has been demonstrated that a specific 8-bp sequence, 5'-GCTGGTGG-3', named Chi, can protect linear double-stranded DNA from the major Escherichia coli exonuclease RecBCD. Chi protects linear replication products of rolling-circle plasmids from RecBCD degradation in vivo, in agreement with observations in vitro. A unique 7-bp sequence, 5'-GCGCGTG-3', is shown to protect similar replication products from degradation in Lactococcus lactis strains but not in more distantly related Gram-positive bacteria. The properties of this sequence in L. lactis correspond to those of a Chi site. Linear plasmid replication products have been detected in numerous prokaryotes, suggesting the widespread existence of short species-specific sequences that preserve linear DNA from extensive degradation by host cell exonucleases.
Linear DNA molecules are subject to degradation by various exonucleases in vivo unless their ends are protected. It has been demonstrated that a specific 8-bp sequence, 5'-GCTGGTGG-3', named Chi, can protect linear double-stranded DNA from the major Escherichia coli exonuclease RecBCD. Chi protects linear replication products of rolling-circle plasmids from RecBCD degradation in vivo, in agreement with observations in vitro. A unique 7-bp sequence, 5'-GCGCGTG-3', is shown to protect similar replication products from degradation in Lactococcus lactis strains but not in more distantly related Gram-positive bacteria. The properties of this sequence in L. lactis correspond to those of a Chi site. Linear plasmid replication products have been detected in numerous prokaryotes, suggesting the widespread existence of short species-specific sequences that preserve linear DNA from extensive degradation by host cell exonucleases
A unique 7-bp sequence, 5'-GCGCGTG-3', is shown to protect replication products from degradation in Lactococcus lactis strains but not in more distantly related Gram-positive bacteria.
Author Maguin, E
Ehrlich, S.D
Gruss, A
Biswas, I. (National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD.)
AuthorAffiliation Laboratoire de Génétique Microbienne, Institut National de la Recherche Agronomique, Jouy en Josas, France
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Snippet Linear DNA molecules are subject to degradation by various exonucleases in vivo unless their ends are protected. It has been demonstrated that a specific 8-bp...
A unique 7-bp sequence, 5'-GCGCGTG-3', is shown to protect replication products from degradation in Lactococcus lactis strains but not in more distantly...
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SubjectTerms ACTIVIDAD ENZIMATICA
ACTIVITE ENZYMATIQUE
ADN
Bacteria
Base Composition
Base Sequence
Chromosomes
DEGRADACION
DEGRADATION
Deoxyribonucleic acid
DNA
DNA Replication
DNA, Bacterial
DNA, Bacterial - genetics
DNA, Bacterial - metabolism
enzyme activity
Enzymes
Escherichia coli
Escherichia coli - genetics
Exodeoxyribonuclease V
Exodeoxyribonucleases
Exodeoxyribonucleases - genetics
Exodeoxyribonucleases - metabolism
Genetics
Genomes
LACTOCOCCUS LACTIS
Lactococcus lactis - genetics
metabolism
Molecular Sequence Data
NUCLEASAS
NUCLEASE
nucleases
nucleotide sequences
Nucleotides
PLASMIDE
PLASMIDIOS
Plasmids
Polymerase chain reaction
SECUENCIA NUCLEICA
SEQUENCE NUCLEIQUE
Sequencing
Species Specificity
Substrate Specificity
Transcriptional regulatory elements
Title A 7-base-pair sequence protects DNA from exonucleolytic degradation in Lactococcus lactis
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