Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | Daci_5724 |
Symbol | |
ID | 5751344 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Delftia acidovorans SPH-1 |
Kingdom | Bacteria |
Replicon accession | NC_010002 |
Strand | - |
Start bp | 6367711 |
End bp | 6370230 |
Gene Length | 2520 bp |
Protein Length | 839 aa |
Translation table | 11 |
GC content | 69% |
IMG OID | 641300856 |
Product | heavy metal translocating P-type ATPase |
Protein accession | YP_001566737 |
Protein GI | 160901155 |
COG category | [P] Inorganic ion transport and metabolism |
COG ID | [COG2217] Cation transport ATPase [COG2608] Copper chaperone |
TIGRFAM ID | [TIGR00003] copper ion binding protein [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 | 18 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | 31 |
Fosmid unclonability p-value | 0.788276 |
Fosmid Hitchhiker | No |
Fosmid clonability | normal |
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Sequence |
Gene sequence | ATGAATGCAT CGACCAAGGC CGGCATGGCC ATAGACCTGC CCGTTCAGGG CATGACCTGC GCCTCCTGCG TGGGGCGTGT GGAACGCGCG CTCAAGAAGC TGCCGGGCGT GCAGGAAGCC GTGGTCAACC TGGCCACCGA AAAGGCCAGC ATCCGTTTCG AGGGCGCGGC CGATCTACCG GCCGCCATTT CCGCCATCGA GAAGGCCGGC TACGAAGTGC CCCAGTCCAG CGTGGAGTTG GAGGTGGAGG GCATGACCTG CGCCTCCTGC GTAGGCCGCG TGGAGCGGGC GCTGAAAAAG GTGGAGGGCG TGCAATCGGC CAGCGTGAAC CTGGCCACCG AACGTGCATT GGTGACGCTG GCTGGCAGTG CAGATGTGGC GGCCCTTGTG GCAGCTGTGC ACAAGGCCGG GTACGAAGCG CGTCCGCTGG GCGCCAGCGC GAACCCGGCC AGTGAAGGCG GCGCTGCGCA GTCGCCGGCT GAAGACGGCA CGGAGCAGCG CCAGGCGCGC GAGCGTGCGT CGCTCAAGCG CTCGCTGATC GTGGCCACGG TGTTCGCGCT GCCGGTGTTC GTGCTGGAGA TGGGCGGCCA CATGGTGCCG GCCTTCCACC ACTGGGTGGG GCAGGCCATC GGCACCCAGA ACAGCTGGTA CCTGCAGTGC CTGCTGTCGG CCATCGTGCT GTTCGGGCCG GGCCTGCGCT TCTTCCAGAA GGGCATTCCC GCGCTGCTGC GCGGCGCGCC CGACATGAAT TCGCTGGTGG CCGTTGGCAC CTCGGCGGCC TTTGCCTATT CGCTGGTGGC CACCTTCGTG CCGCAGTGGC TGCCGGCCGG CACGGTGAAT GTGTATTACG AGGCGGCGGC CGTGATCGTG GCGCTGATCC TGCTGGGCCG CTTCATGGAG GCGCGCGCCA AGGGCAATAC CTCGGAGGCC ATCCGCCGCC TGGTGCGACT GCAGGCCAAG ACGGCGCGCG TGCGCAAGGA CGGCGCCGTG CAGGAAGTGG ACATCGCCGC CGTGCGTGCG GGCGACACCA TCGAGGTGCG GCCCGGCGAG CGCATTCCCG TCGATGGCGA GGTCATCGAG GGCAGCAGCT TCGTCGATGA ATCCATGATC AGCGGAGAGC CCGTGCCGGT CGAGAAAACC CCGGGAGCCG AACTGGTCGG CGGCACGGTG AACCAGAACG GCGCACTGGC CTTTCGCGCC ACCAAGGTGG GCGCGGACAC GCTGCTGGCG CAGATCATCC GCATGGTCGA GCAGGCCCAG GGCTCCAAGC TGCCCATACA GGCGCTGGTG GACCAGGTCA CCATGTGGTT CGTGCCGGCC GTGATGGCCG TGGCCCTGCT GACCTTCGGC GCATGGCTGG CCTGGGGGCC GTCGCCCGCA CTGAGCTTTG CGCTGGTCAA TGCCGTGGCC GTGCTCATCA TCGCCTGCCC CTGCGCCATG GGCCTGGCCA CGCCCACCTC CATCATGGTG GGTACGGGCC GGGCCGCTCA GATGGGCGTG CTGCTGCGCA AGGGCGAGGC CCTGCAGACC CTCAAGGACG CCCGCGTGGT GGCCGTGGAC AAGACCGGCA CGCTGACGCG CGGCCGCCCC GAGCTGACCG ACCTGGTGCT GGCCCCGGGC TTCGAGGGCG AGCGCAGCCG CGTGCTGGCG CTGGTGGCGG CCGTGGAAGA CCGCTCCGAG CACCCGATTG CGCGCGCCAT CGTGGATGCT GCCAAGGCCG AGGATCTGCC GCTGGGTGCT GTTGATCGCT TTGAATCGGT CACGGGCTTT GGCGTGCGCG CCCAGGTGGA GGGCGTGCGC GTGGAGATCG GTGCCGACCG CTTCATGCGC GAATTGGGCC TGCAGGTGGA CACGCTGGCA GACGAGGCCG CGCGCCTGGG CGACGAAGGC AAAACGCCTC TGTATGCCGC CGTGGACGGC CGCCTGGCCG CCATGATCGC CGTGGCCGAT CCCATCAAGG ACAGCACGCC GGCCGCCATT GCCGCGCTGC ACGCCTTGGG CCTGAAGGTG GCCATGATCA CCGGCGACAA CCGCCGCACG GCCGAGGCCA TTGCGCGGCA GCTGGGCATC GACGAGGTGG TGGCCGAGGT GCTGCCCGGC GGCAAGGTCG ATGCCGTCAA GCGCCTGAAG GCCGAGCACG GCACGCTGGC CTATGTGGGC GACGGCATCA ACGACGCGCC GGCCCTGGCC GAGGCCGATG TGGGCCTGGC CATCGGCACG GGCACGGACA TCGCCATCGA GGCGGCCGAC GTGGTGCTGA TGTCAGGCGA CCTGGGTGGC GTACCCAATG CGATCGCGCT GTCCAAGGCC ACCATGGCCA ATATCCGCCA GAACCTGTTC TGGGCCTTTG CCTACAACGT GGCCCTGATC CCCGTGGCCG CGGGCCTGCT GTACCCCGTC AACGGCACGC TGCTGTCGCC CGTGTTCGCG GCCGGGGCCA TGGCGCTGTC CAGCGTCTTC GTGCTCAGCA ACGCGCTGCG CCTGCGGCGC TTCAGTCCGC CGTTGGCGGC GGGGCGTTGA
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Protein sequence | MNASTKAGMA IDLPVQGMTC ASCVGRVERA LKKLPGVQEA VVNLATEKAS IRFEGAADLP AAISAIEKAG YEVPQSSVEL EVEGMTCASC VGRVERALKK VEGVQSASVN LATERALVTL AGSADVAALV AAVHKAGYEA RPLGASANPA SEGGAAQSPA EDGTEQRQAR ERASLKRSLI VATVFALPVF VLEMGGHMVP AFHHWVGQAI GTQNSWYLQC LLSAIVLFGP GLRFFQKGIP ALLRGAPDMN SLVAVGTSAA FAYSLVATFV PQWLPAGTVN VYYEAAAVIV ALILLGRFME ARAKGNTSEA IRRLVRLQAK TARVRKDGAV QEVDIAAVRA GDTIEVRPGE RIPVDGEVIE GSSFVDESMI SGEPVPVEKT PGAELVGGTV NQNGALAFRA TKVGADTLLA QIIRMVEQAQ GSKLPIQALV DQVTMWFVPA VMAVALLTFG AWLAWGPSPA LSFALVNAVA VLIIACPCAM GLATPTSIMV GTGRAAQMGV LLRKGEALQT LKDARVVAVD KTGTLTRGRP ELTDLVLAPG FEGERSRVLA LVAAVEDRSE HPIARAIVDA AKAEDLPLGA VDRFESVTGF GVRAQVEGVR VEIGADRFMR ELGLQVDTLA DEAARLGDEG KTPLYAAVDG RLAAMIAVAD PIKDSTPAAI AALHALGLKV AMITGDNRRT AEAIARQLGI DEVVAEVLPG GKVDAVKRLK AEHGTLAYVG DGINDAPALA EADVGLAIGT GTDIAIEAAD VVLMSGDLGG VPNAIALSKA TMANIRQNLF WAFAYNVALI PVAAGLLYPV NGTLLSPVFA AGAMALSSVF VLSNALRLRR FSPPLAAGR
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