Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | SbBS512_E0419 |
Symbol | copA |
ID | 6270613 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Shigella boydii CDC 3083-94 |
Kingdom | Bacteria |
Replicon accession | NC_010658 |
Strand | - |
Start bp | 407705 |
End bp | 410209 |
Gene Length | 2505 bp |
Protein Length | 834 aa |
Translation table | 11 |
GC content | 58% |
IMG OID | 641724647 |
Product | copper exporting ATPase |
Protein accession | YP_001879196 |
Protein GI | 187731411 |
COG category | [P] Inorganic ion transport and metabolism |
COG ID | [COG2217] Cation transport ATPase [COG2608] Copper chaperone |
TIGRFAM ID | [TIGR01494] ATPase, P-type (transporting), HAD superfamily, subfamily IC [TIGR01511] copper-(or silver)-translocating P-type ATPase [TIGR01525] heavy metal translocating P-type ATPase |
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Plasmid Coverage information |
Num covering plasmid clones | 26 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | n/a |
Fosmid unclonability p-value | n/a |
Fosmid Hitchhiker | n/a |
Fosmid clonability | n/a |
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Sequence |
Gene sequence | ATGTCACAAA CTATCGACCT GACCCTGGAC GGCCTGTCCT GCGGTCACTG CGTTAAACGC GTGAAAGAAA GTCTCGAACA GCGCCCGGAT GTGGAACAAG CGGATGTGTC TATCACTGAA GCGCACGTTA CCGGGACTGC CAGTGCAGAA CAGCTGATCG AAACCATCAA ACAAGCGGGT TATGACGCAT CTGTAAGCCA CCCAAAGGCT AAACCGCTGG CGGAGTCATC AATCCCGTCG GAAGCACTGA CAGCGGTTTC TGAGGCGCTT CCGGCAGCGA CCGCCGATGA CGATGACAGC CAGCAGTTGC TGCTGAGCGG CATGAGCTGC GCCAGCTGTG TCACCCGCGT ACAAAATGCG CTGCAAAGCG TACCGGGCGT CACTCAGGCA CGGGTAAACC TGGCGGAGCG TACTGCGCTG GTGATGGGCA GTGCCTCCCC ACAAGATTTA GTGCAGGCGG TGGAAAAAGC GGGCTACGGC GCGGAAGCGA TTGAAGATGA CGCGAAACGC CGCGAGCGCC AGCAGGAAAC CGCCGTCGCT ACGATGAAGC GCTTCCGCTG GCAGGCGATT GTCGCACTGG CGGTGGGTAT TCCGGTAATG GTCTGGGGGA TGATCGGCGA TAACATGATG GTCACCGCTG ACAACCGCAG CCTGTGGTTA GTTATCGGCC TGATAACCCT GGCGGTAATG GTTTTCGCCG GCGAGCATTT TTACCGCAGC GCGTGGAAAA GCCTGCTGAA CGGTGCGGCG ACGATGGATA CGCTGGTGGC GCTGGGTACG GGTGTGGCGT GGCTCTATTC GATGAGCGTC AACCTGTGGC CGCAGTGGTT CCCGATGGAA GCGCGGCATC TTTACTATGA AGCCAGTGCG ATGATTATCG GTCTGATTAA TCTCGGCCAT ATGCTGGAAG CGCGCGCGCG TCAGCGTTCT TCTAAGGCGC TGGAGAAATT ACTCGATTTA ACCCCACCGA CGGCGCGAGT GGTCACCGCA GAGGGTGAAA AAAGCGTGCC GCTGGCGGAA GTTCAGCCAG GGATGTTACT GCGCCTGACG ACCGGCGATC GCGTGCCGGT AGATGGCGAG ATTACCCAGG GCGAAGCATG GCTGGATGAA GCGATGCTGA CGGGCGAACC AATCCCGCAG CAAAAAGGCG AAGGCGAAAG CGTCCATGCC GGGACAGTGG TACAGGACGG TAGCGTGCTA TTTCGCGCCA GTGCGGTTGG CAGCCATACC ACGCTGTCAA GGATTATTCG CATGGTGCGC CAGGCCCAGA GCAGCAAGCC AGAAATCGGT CAGCTGGCGG ATAAAATCTC AGCCGTATTT GTGCCGGTAG TAGTGGTGAT TGCGCTGATC AGTGCAGCAA TCTGGTATTT CTTTGGTCCG GCACCGCAGA TTGTCTATAC CCTGGTGATA GCCACCACGG TGCTGATTAT TGCCTGTCCG TGTGCGCTGG GGCTGGCGAC GCCAATGTCG ATTATTTCCG GCGTCGGGCG GGCGGCTGAG TTTGGCGTGC TGGTGCGGGA CGCCGACGCG CTGCAACGCG CCAGTACACT CGATACCGTC GTGTTCGATA AAACCGGGAC GCTGACCGAA GGGAAGCCGC AGGTTGTCGC AGTAAAAACA TTTGCTGATG TTGATGAAGC GCAAGCATTG CGTCTGGCGG CGGCGCTGGA GCAAGGTTCC AGCCATCCGC TGGCACGAGC GATCCTCGAT AAAGCAGGCG ATATGCAGCT GCCGCAGGTC AACGGTTTCC GCACATTGCG CGGGCTGGGC GTAAGCGGTG AAGCTGAAGG TCATGCGTTA TTGCTGGGTA ATCAGGCGCT GTTAAATGAC CAGCAAGTCG ATACTAAAGC GATTGAAGCC GATATTTCAG CTCAGGCATC GCAAGGAGCA ACGCCTGTGC TGCTGGCGAT TGACGGGAAA GTAGTAGCCC TGCTGGCTGT ACGCGATCCG TTGCGTAGTG ATAGCGTGGC GGCGCTGCAA CGCCTGCATA AAGCGGGATA TCGTCTGGTG ATGTTGACCG GGGATAACCC AACCACCGCC AATGCGATCG CCAAAGAAGC AGGGATTGAT GAGGTGATCG CCGGGGTGCT GCCAGACGGT AAAGCCGAAG CGATCAAACG TCTGCAAAGT GAAGGACGTC AGGTGGCAAT GGTGGGCGAC GGCATTAACG ACGCGCCAGC GCTGGCTCAG GCGGATGTCG GTATTGCGAT GGGTGGCGGC AGTGATGTTG CCATTGAAAC CGCGGCGATT ACCCTGATGC GCCATAGCCT GATGGGTGTT GCAGATGCGC TCGCGATTTC CCGCGCAACG CTGCGCAATA TGAAGCAGAA CCTGCTCGGT GCGTTTATCT ACAACAGCAT TGGTATTCCG GTCGCCGCTG GTATTTTGTG GCCGTTTACT GGAACACTGC TTAACCCGGT AGTTGCCGGA GCGGCAATGG CGCTCTCGTC GATTACCGTA GTGAGTAACG CCAACCGGTT GCTGCGGTTT AAACCGAAGG AATAA
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Protein sequence | MSQTIDLTLD GLSCGHCVKR VKESLEQRPD VEQADVSITE AHVTGTASAE QLIETIKQAG YDASVSHPKA KPLAESSIPS EALTAVSEAL PAATADDDDS QQLLLSGMSC ASCVTRVQNA LQSVPGVTQA RVNLAERTAL VMGSASPQDL VQAVEKAGYG AEAIEDDAKR RERQQETAVA TMKRFRWQAI VALAVGIPVM VWGMIGDNMM VTADNRSLWL VIGLITLAVM VFAGEHFYRS AWKSLLNGAA TMDTLVALGT GVAWLYSMSV NLWPQWFPME ARHLYYEASA MIIGLINLGH MLEARARQRS SKALEKLLDL TPPTARVVTA EGEKSVPLAE VQPGMLLRLT TGDRVPVDGE ITQGEAWLDE AMLTGEPIPQ QKGEGESVHA GTVVQDGSVL FRASAVGSHT TLSRIIRMVR QAQSSKPEIG QLADKISAVF VPVVVVIALI SAAIWYFFGP APQIVYTLVI ATTVLIIACP CALGLATPMS IISGVGRAAE FGVLVRDADA LQRASTLDTV VFDKTGTLTE GKPQVVAVKT FADVDEAQAL RLAAALEQGS SHPLARAILD KAGDMQLPQV NGFRTLRGLG VSGEAEGHAL LLGNQALLND QQVDTKAIEA DISAQASQGA TPVLLAIDGK VVALLAVRDP LRSDSVAALQ RLHKAGYRLV MLTGDNPTTA NAIAKEAGID EVIAGVLPDG KAEAIKRLQS EGRQVAMVGD GINDAPALAQ ADVGIAMGGG SDVAIETAAI TLMRHSLMGV ADALAISRAT LRNMKQNLLG AFIYNSIGIP VAAGILWPFT GTLLNPVVAG AAMALSSITV VSNANRLLRF KPKE
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