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InterPro: IPR006134 DNA-directed DNA polymerase, family B, conserved region
Protein matches
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UniProtKB Matches: 3164 proteins |
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Accession
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IPR006134 DNA-dir_DNA_pol_B_cons-reg |
Secondary
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IPR002064
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Type
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Domain |
Signatures
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InterPro Relationships
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Found in
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IPR004578 DNA-directed DNA polymerase, family B, pol2
IPR006172 DNA-directed DNA polymerase, family B
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Contains
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IPR017964 DNA-directed DNA polymerase, family B, conserved site
IPR017966 DNA-directed DNA polymerase, family B, conserved region2
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GO Term annotation
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Process
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GO:0006260 DNA replication
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Function
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GO:0000166 nucleotide binding
GO:0003677 DNA binding
GO:0003887 DNA-directed DNA polymerase activity
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InterPro annotation
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Entry Details in BioMart
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Abstract
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DNA is the biological information that instructs cells how to exist in an ordered fashion: accurate replication is thus one of the
most important events in the life cycle of a cell. This function is performed by DNA- directed DNA-polymerases EC:2.7.7.7)
by adding nucleotide triphosphate (dNTP) residues to the 5'-end of the growing chain of DNA, using a complementary DNA
chain as a template. Small RNA molecules are generally used as primers for chain elongation, although terminal proteins
may also be used for the de novo synthesis of a DNA chain. Even though there are 2 different methods of priming, these are
mediated by 2 very similar polymerases classes, A and B, with similar methods of chain elongation.
A number of DNA polymerases have been grouped under the designation of DNA polymerase family B. Six regions
of similarity (numbered from I to VI) are found in all or a subset of the B family polymerases. The most conserved region (I)
includes a conserved tetrapeptide with two aspartate residues. Its function is not yet known, however, it has been suggested
that it may be involved in binding a magnesium ion. All sequences in the B family contain a characteristic DTDS motif, and
possess many functional domains, including a 5'-3' elongation domain, a 3'-5' exonuclease domain [1], a DNA binding domain,
and binding domains for both dNTP's and pyrophosphate [2].
This region of DNA polymerase B appears to consist of more than one structural domain, possibly including elongation,
DNA-binding and dNTP binding activities [2].
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Structural links
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Database links
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Pfam Clan: CL0194.6
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Example proteins
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P09884 DNA polymerase alpha catalytic subunit
P13382 DNA polymerase alpha catalytic subunit A
P26019 DNA polymerase alpha catalytic subunit
P33609 DNA polymerase alpha catalytic subunit
P90829 DNA polymerase delta catalytic subunit
More proteins
Example Proteins Key
| InterPro entry accession number/name and structure databases |
Colour code |
| IPR004578 |
DNA-directed DNA polymerase, family B, pol2 |
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| IPR015088 |
Zinc finger, DNA-directed DNA polymerase, family B, alpha |
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| IPR006134 |
DNA-directed DNA polymerase, family B, conserved region |
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| IPR006133 |
DNA-directed DNA polymerase, family B, exonuclease domain |
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| IPR017966 |
DNA-directed DNA polymerase, family B, conserved region2 |
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| IPR017964 |
DNA-directed DNA polymerase, family B, conserved site |
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| IPR006172 |
DNA-directed DNA polymerase, family B |
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| IPR012337 |
Polynucleotidyl transferase, ribonuclease H fold |
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SWISS-MODEL |
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PDB Chain |
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ModBase |
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SCOP Domain |
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Additional Reading
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Zahn KE, Belrhali H, Wallace SS, Doublie S.
Caught bending the A-rule: crystal structures of translesion DNA synthesis with a non-natural nucleotide.
Biochemistry 46 2007 10551-61
[PubMed: 17718515]
http://dx.doi.org/10.1021/bi7008807
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Zhong X, Pedersen LC, Kunkel TA.
Characterization of a replicative DNA polymerase mutant with reduced fidelity and increased translesion synthesis capacity.
Nucleic Acids Res. 36 2008 3892-904
[PubMed: 18503083]
http://dx.doi.org/10.1093/nar/gkn312
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Firbank SJ, Wardle J, Heslop P, Lewis RJ, Connolly BA.
Uracil recognition in archaeal DNA polymerases captured by X-ray crystallography.
J. Mol. Biol. 381 2008 529-39
[PubMed: 18614176]
http://dx.doi.org/10.1016/j.jmb.2008.06.004
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Kuroita T, Matsumura H, Yokota N, Kitabayashi M, Hashimoto H, Inoue T, Imanaka T, Kai Y.
Structural mechanism for coordination of proofreading and polymerase activities in archaeal DNA polymerases.
J. Mol. Biol. 351 2005 291-8
[PubMed: 16019029]
http://dx.doi.org/10.1016/j.jmb.2005.06.015
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Sun S, Geng L, Shamoo Y.
Structure and enzymatic properties of a chimeric bacteriophage RB69 DNA polymerase and single-stranded DNA binding protein with increased processivity.
Proteins 65 2006 231-8
[PubMed: 16881051]
http://dx.doi.org/10.1002/prot.21088
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InterPro 23.1
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