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ATP + H2O
ADP + phosphate
double-stranded DNA
single stranged DNA
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unwinding of double-stranded DNA
substrate for the DNA strand-exchange protein, RecA
?
double-stranded DNA
single-stranded DNA
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ATP-dependent, unwinding of DNA molecule
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?
double-stranded DNA
single-stranded DNA fragments
double-stranded DNA + H2O
single-stranded DNA fragments
douple-stranded DNA
?
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the enzyme is required for the major pathway of double-strand DNA break repair and genetic exchange, the enzyme has potent nuclease and helicase activity
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?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
additional information
?
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ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
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DNA dependent
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-
?
ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
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-
-
-
r
ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
-
-
-
-
?
ATP + H2O
ADP + phosphate
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-
-
-
?
ATP + H2O
ADP + phosphate
-
-
-
-
?
double-stranded DNA
single-stranded DNA fragments
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the enzyme plays a an important role in the initiation of DNA recombination and recombinant-dependent DNA replication
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?
double-stranded DNA
single-stranded DNA fragments
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the enzyme plays a an important role in the initiation of DNA recombination and recombinant-dependent DNA replication
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?
double-stranded DNA + H2O
single-stranded DNA fragments
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-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
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-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
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-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
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-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
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responsible for several steps in genetic recombination process
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-
?
double-stranded DNA + H2O
single-stranded DNA fragments
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ATP-dependent exonuclease
133994, 133995, 133996, 133997, 133998, 133999, 134000, 134001, 134002, 134003, 134004, 134012, 134013, 134023, 134025, 134026, 134027, 134028, 134029, 134030, 134031 -
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?
double-stranded DNA + H2O
single-stranded DNA fragments
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ATP-dependent helicase
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-
?
double-stranded DNA + H2O
single-stranded DNA fragments
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-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
-
-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
-
-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
-
-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
-
-
-
-
?
double-stranded DNA + H2O
single-stranded DNA fragments
-
-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
-
-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
-
-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
-
-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
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-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
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ATP-dependent exonuclease
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-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
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ATP-dependent endonuclease
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-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
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ATP-stimulated endonuclease
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-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
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-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
-
-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
-
-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
-
-
-
-
?
single stranded DNA + H2O
5'-phosphomonoester oligonucleotides
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-
-
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?
additional information
?
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the RecA protein loading is an essential function of the enzyme
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?
additional information
?
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first: The enzyme is a potent double-stranded DNA exonuclease that destroys linear DNA produced by restriction of foreign DNA. second: The enzyme promotes repair of double-stranded DNA breaks and genetic recombination in the vicinity of chi recombination hotspots.
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?
additional information
?
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the activities of enzyme responsible for the initiation of recombinantional and repair processes are required for UV-induced restriction alleviation
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?
additional information
?
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The enzyme is involved in the radiation-induced process know as prophage inactivation. The helicase activity of enzyme is responsible for the progressive loss of prophage recombinogenicity. This loss is most probably a consequence of the unsuccessful enzyme-dependent recombinational repair of double-stranded breaks in the cell chromosome, during which some structures unsuitable for further recombination reactions may be produced.
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?
additional information
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RecD protein expression level is decreased at lower cultivation temperature, which greatly improves the productivity of cell-free protein synthesis from linear DNA templates
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?
additional information
?
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RecBCD degradation of DNA is inhibited by either cisplatin-damaged or UV-damaged DNA sequences
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?