Identification |
Name: |
DNA polymerase I |
Synonyms: |
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Gene Name: |
polA |
Enzyme Class: |
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Biological Properties |
General Function: |
Involved in nucleic acid binding |
Specific Function: |
In addition to polymerase activity, this DNA polymerase exhibits 3' to 5' and 5' to 3' exonuclease activity. It is able to utilize nicked circular duplex DNA as a template and can unwind the parental DNA strand from its template |
Cellular Location: |
Cytoplasmic |
KEGG Pathways: |
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KEGG Reactions: |
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| + | DNA | ↔ | | + | DNA |
| | |
| + | DNA | ↔ | | + | DNA |
| | |
| + | DNA | ↔ | | + | DNA |
| | |
| + | DNA | ↔ | | + | DNA |
| | |
Deoxynucleoside triphosphate | + | DNA | ↔ | |
| |
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SMPDB Reactions: |
Not Available |
PseudoCyc/BioCyc Reactions: |
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DNAn | ? | a nucleoside monophosphate |
| | |
? | a 5'-phosphomononucleotide |
| |
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Complex Reactions: |
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Deoxynucleoside triphosphate | + | DNA(n) | → | | + | DNA(n+1) |
| |
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Transports: |
Not Available |
Metabolites: |
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GO Classification: |
Component |
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cell part | intracellular | Function |
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3'-5' exonuclease activity | 5'-3' exonuclease activity | binding | catalytic activity | DNA binding | DNA polymerase activity | DNA-directed DNA polymerase activity | exonuclease activity | hydrolase activity | hydrolase activity, acting on ester bonds | nuclease activity | nucleic acid binding | nucleotidyltransferase activity | transferase activity | transferase activity, transferring phosphorus-containing groups | Process |
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cellular macromolecule metabolic process | cellular nitrogen compound metabolic process | DNA metabolic process | DNA repair | DNA replication | macromolecule metabolic process | metabolic process | nitrogen compound metabolic process | nucleobase, nucleoside, nucleotide and nucleic acid metabolic process |
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Gene Properties |
Locus tag: |
PA5493 |
Strand: |
- |
Entrez Gene ID: |
877794 |
Accession: |
NP_254180.1 |
GI: |
15600686 |
Sequence start: |
6183784 |
Sequence End: |
6186525 |
Sequence Length: |
2741 |
Gene Sequence: |
>PA5493
ATGAGCCAAGCGCCCCTCGTCCTGGTGGACGGTTCCTCGTACCTGTACCGCGCCTTCCATGCCCTGCCGCCGCTGACCACCTCGACCGGCAAGCCCACCGGTGCGGTGAAGGGCGTGCTGAACATGCTCCTGAGCCTGCGCAAGCAGTACCCGGACAGCCCGTTCGCGGTGGTCTTCGACGCCAAGGGCCCGACCTTCCGCGACGAGCTGTTCGCCGAGTACAAGGCCAACCGGCCGTCGATGCCCGACGACCTGCGGGTCCAGGTCGAGCCGCTGCATGCCAGCGTCCGCGCCCTCGGCCTGCCGCTGCTGTGCGTGGAGGGGGTCGAGGCCGACGACGTGATCGGCACCCTGGCGCGCAGCAGCGCCGCGGCTGACCGCCCGGTGGTGATTTCCACCGGCGACAAGGACATGGCGCAACTGGTCGACGGGCACATTACGCTGGTCAACACCATGACCGGTAGCCGCCTCGACGTGGATGGCGTGAAAGAGAAATTCGGCGTCGGTCCTGAGCTGATCATCGATTTCCTCGCCCTGATGGGCGACAAGGTCGACAACATCCCCGGCGTTCCGGGTGTCGGCGAGAAAACCGCGCTGGGCCTGCTGACCGGTGTCGGTGGCGGCCTGGAGGTGCTCTACGCCAGCCTGGACAAGGTGCCCGAGCTACCGATCCGCGGCGCCAAGGGCTTGCCGGCGAAGCTCGAGGAAAATCGCGAGCAGGCGTTCCTGTCCTATCAACTGGCGACCATCAAGACCGACGTCGAACTGGACGTGGAGATCGACAAGCTGTATCCCGGCGAGCCGCAGCGCGAAGCGCTGATCGCCCTGTACCGCGAGCTGGAGTTCAAGAACTGGCTGGACGACCTCCTGCGCGAGGCCAAGGAGGCCGGCGAGAACGGCGAGGCGGAAACGCCTATCCAGGCCGAGGTCGACTACGACGTGGTGCTCGACCAGGCCGGATTCGACGCCTGGCTGAAGAAGCTGGAGGAGGCCGAGCTGATCGCCTTCGATACCGAGACCACCAGCATCGACGCCCAGCAGGCGCAGGTGGTGGGGGTGTCCTTCGCCGTGAAGGAGGGCGAGGCCGCCTACGTGCCGCTGGCCCACAGCTACATGGGCGTTCCGGAGCAACTGGATCGTGACGCGGTGCTGCGTGCGTTGAAACCGCTGCTGGAGGATCCGAAGAAGCTCAAGGTCGGCCAGCATGCCAAGTACGACATCAATGTCCTGGCCAATGCCAGCACCCCCATCGCGCTGCGGGGCGTAGCCTACGACACCATGCTCGAGTCCTATGTGCTGGACTCCACCGCCACTCGCCACGACATGGACAGCCTGGCCCTGAAGTACCTCGGCCACAGCACCATCCGTTTCGAGGACATCGCCGGCAAGGGCGCCAAGCAACTGACCTTCGACCAGATCGCCATCGAACAGGCCGGGCCCTATGCGGCGGAGGACGCCGACGTGACCCTGCGCCTGCACCAGGCCCTGTGGCAGAAGCTGGAGGCGATCCCGTCCCTGGCCAGGGTCCTGACCGACATCGAGATGCCGCTGGTACCGGTGCTGGCGCGGATCGAGCGCAACGGCGCGCTGGTCGACGCCAACCTGCTGGGCATCCAGAGCCGCGAACTGGGCGAGAAGATGGTCGCCCTGGAGCGCCAGGCATACGACCTGGCAGGGCAGGAATTCAACCTCGGCTCGCCCAAGCAGCTCGGCGCGATCCTCTACGACAAGCTCGGCCTGCCGGTTCTGAGCAAGACCGCGACCGGCCAGCCGTCCACCGCCGAGGCAGTGCTCGCCGAACTGGCCGAGCAGGACTTCGAGCTGCCCAAGGTGATCATGCAGTACCGCTCCATGAGCAAGCTCAAGAGCACCTACACCGACCGCCTGCCCGAGCAGATCAACCCGCGTACCGGACGCATCCATACCTCATACCACCAGGCGGTGGCGGCTACCGGGCGGCTGTCGTCGAGCGACCCGAACCTGCAGAACATCCCGATCCGTACCGCGGAGGGCCGGCGCATCCGCCAGGCGTTCGTCGCGCCGCAGGGCTACAAGCTATTGGCCGCGGACTACTCGCAGATCGAGCTGCGGATCATGGCCCACCTGGCCAAGGACGATGGCCTGCTGGATGCCTTCCGCCACGACCTGGACGTACACCGCGCCACCGCGGCGGAAGTCTTCGGCGTGCCGCTGGAAGACGTCAGCGGCGACCAGCGACGCAGCGCCAAGGCGATCAACTTCGGATTGATCTACGGCATGAGCGCCTTCGGCCTGGCCAAGCAGATCGGCGTCGAGCGCAAGGAGGCCCAGGCCTACATCGACCGTTACTTCGCCCGCTACCCCGGCGTCCTGGCGTACATGGAGCGGACCCGCGCCCAGGCCGCGGAGCAGGGCTTCGTCGAAACCCTGTTCGGCCGTCGCCTGTACCTGCCGGAGATCCATTCGAAGAACGGTGCCATGCGCAAGGCCGCCGAGCGCACCGCGATCAACGCGCCGATGCAGGGCACCGCGGCGGACATCATGAAGCGCGCCATGGTCGCTGTGGATAACTGGCTGCAGGAAAGCGGCCTCGATGCCCGGGTGATCCTCCAGGTGCACGACGAACTGGTGCTGGAAGTGCGCGAGGACCTGGTCGAGCAGGTGTGCGAGGGAATCCGCCCGCTGATGAGCGGAGCGGCGACCCTGGACGTACCGCTGGTGGTCGAGGCGGGTGTCGGTTCGAACTGGGACGAAGCCCACTGA |
Protein Properties |
Protein Residues: |
913 |
Protein Molecular Weight: |
99.8 kDa |
Protein Theoretical pI: |
4.75 |
Hydropathicity (GRAVY score): |
-0.135 |
Charge at pH 7 (predicted): |
-32.14 |
Protein Sequence: |
>PA5493
MSQAPLVLVDGSSYLYRAFHALPPLTTSTGKPTGAVKGVLNMLLSLRKQYPDSPFAVVFDAKGPTFRDELFAEYKANRPSMPDDLRVQVEPLHASVRALGLPLLCVEGVEADDVIGTLARSSAAADRPVVISTGDKDMAQLVDGHITLVNTMTGSRLDVDGVKEKFGVGPELIIDFLALMGDKVDNIPGVPGVGEKTALGLLTGVGGGLEVLYASLDKVPELPIRGAKGLPAKLEENREQAFLSYQLATIKTDVELDVEIDKLYPGEPQREALIALYRELEFKNWLDDLLREAKEAGENGEAETPIQAEVDYDVVLDQAGFDAWLKKLEEAELIAFDTETTSIDAQQAQVVGVSFAVKEGEAAYVPLAHSYMGVPEQLDRDAVLRALKPLLEDPKKLKVGQHAKYDINVLANASTPIALRGVAYDTMLESYVLDSTATRHDMDSLALKYLGHSTIRFEDIAGKGAKQLTFDQIAIEQAGPYAAEDADVTLRLHQALWQKLEAIPSLARVLTDIEMPLVPVLARIERNGALVDANLLGIQSRELGEKMVALERQAYDLAGQEFNLGSPKQLGAILYDKLGLPVLSKTATGQPSTAEAVLAELAEQDFELPKVIMQYRSMSKLKSTYTDRLPEQINPRTGRIHTSYHQAVAATGRLSSSDPNLQNIPIRTAEGRRIRQAFVAPQGYKLLAADYSQIELRIMAHLAKDDGLLDAFRHDLDVHRATAAEVFGVPLEDVSGDQRRSAKAINFGLIYGMSAFGLAKQIGVERKEAQAYIDRYFARYPGVLAYMERTRAQAAEQGFVETLFGRRLYLPEIHSKNGAMRKAAERTAINAPMQGTAADIMKRAMVAVDNWLQESGLDARVILQVHDELVLEVREDLVEQVCEGIRPLMSGAATLDVPLVVEAGVGSNWDEAH |
References |
External Links: |
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General Reference: |
PaperBLAST - Find papers about PA5493 and its homologs
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