Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | Rsph17029_1496 |
Symbol | |
ID | 4897013 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Rhodobacter sphaeroides ATCC 17029 |
Kingdom | Bacteria |
Replicon accession | NC_009049 |
Strand | - |
Start bp | 1560804 |
End bp | 1563881 |
Gene Length | 3078 bp |
Protein Length | 1025 aa |
Translation table | 11 |
GC content | 66% |
IMG OID | 640112086 |
Product | acriflavin resistance protein |
Protein accession | YP_001043378 |
Protein GI | 126462264 |
COG category | [V] Defense mechanisms |
COG ID | [COG0841] Cation/multidrug efflux pump |
TIGRFAM ID | [TIGR00915] The (Largely Gram-negative Bacterial) Hydrophobe/Amphiphile Efflux-1 (HAE1) Family [TIGR01131] ATP synthase subunit 6 (eukaryotes),also subunit A (prokaryotes) |
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Plasmid Coverage information |
Num covering plasmid clones | 9 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | 15 |
Fosmid unclonability p-value | 0.431205 |
Fosmid Hitchhiker | No |
Fosmid clonability | normal |
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Sequence |
Gene sequence | ATGAACATCT CGGAAATCTT CATTCGCCGC CCTGTCGCCT CGACGGTGCT GGCGAGCTTC ATCCTGCTGA TCGGGCTCTA TTCCATCTTC AACCTGCCGG TCCGGCAATA TCCCGAGGTG GAGGAGACGG TCGTCACCAT CACCACCACC TATCCGGGGG CCTCGCCCGA CCTGATCCAG GGCTTCATCA CGGCCCCCAT CGCCCGCGCC GTCGCCACGA CCGAGAACAT CGACTATGTG ACGAGCCAGA GCCGGCCCTC GGCCTCGGTC GTCTCGGTGC AGATGAAGCT CGGCGCAAAT TCGGACGTGG CGCTGACCGA GGTGCTGGCC AAGGTCCAGC AGGTGCGGGG CGAACTGCCC TCGGAGGCCG AGGATCCGGT GATCGTGAAG GGCACGGGCG ACAATTTCGC GCTCATGTAT CTTGCGGCGC TGAACCCCAA CATGTCCGCC GAGCAGATGA CGGAATATCT CGAGCGGGTG ATCCGGCCGC GGATGTCCAC CATCGAGGGT GTGGCCGAAA TCCAGATCAT CGGCGCGGCC GAATATGCGA TGCGGGTCTG GATCGACCCG ATGAAGCTCG CCGCGCGCAA CGTGACCGCC TCGGAGGTGC TGACGGCAAT CCGGGCCTCG AACTTCCTGT CGGCTCCGGG GCGCACCGAG GGCGAATATT TCGCCCGGTC GATCAAGCTG CAATCGACGC TGCAGACCCC CGAGGCCTTC GGGGCGCTGC CGATCCGTTC GCAGGGTGAC GAGGTCGTGC GCCTGCGCGA CGTGGCCGAT GTGGAGCTGG CCTCGGCCGA GCCCGACAGC ATCGTGACCT TCAACGGCCA GCCCGGCACC TTCATCGGGA TCTTCCCGAC GCCGGCCGCG AATCCGCTGA CCACCGCGGC CGCGGTGATC GAGGAGCTGC CCGCGATCAA TGCCACCCTG CCGCAGGGCA TGGAGATCAA CCTCGTCTAC GACTCGACCG AGACGATCAC CGCCTCGATC TACGAGGTGT TCAAGACGCT CGCCGAGGCC GTGGCCATCG TGGTGGTCGT GATCCTCCTC TTCCTCGGCT CGTTCCGTTC GGTGCTGATG CCCATCGTGA CGATCCCGCT CTCGCTGATC GGGGTCTGCG CGGTGCTGCT GGCGCTCGGC TATTCGATCA ACCTTCTGTC GCTTCTGGCG ATGGTGCTCG CCATCGGGCT CGTGGTGGAC GATGCGATCG TGGTGGTCGA GAACATCCAC CGGCACATCG ACGAGGGGAT GAGCCCCTAT CATGCGGCGC TGAAGGGGAT GCGCGAGATC ACCGGCCCCG TCATCGCCAT GACGATCACG CTGGCCGCCG TGCTGGCGCC GCTCGGCTTC TCGGGCGGGC TCACCGGGTC GCTGTTCGCG GAATTCGCCT TCGCGCTGGC GGGATCGGTC ATCATCTCGG GGGTGGTCGC GCTGACGATC ACGCCGATGA TGTCGGCGCG CCTGCTGAAG GCGGGCACCG GCAGCCGCTT CCAGCGCATC GTCGATCACA CGCTCGAAGG CACCGCCAAC TGGTACGAGC GCCGGGTCTC CTCGTCGCTC GACTACCGGC CGGTGACGCT TCTCATGGTG GCGGCGCTCG TCGCGGTCAC GGGGTTCATG TTCATGAACA CGACGAGCGA GCTGGCGCCC GAGGAGGATC AGGGCGCGAT GTTCGCGATC CTGAACGGGC CGCGGTATGC CACCAAGGAA TATACCACGC TCTACACCGA CCGGATCTCG GACGTGACCA AGGACATTCC CGAGGTGCGC ACCGAATTCT CCATCGCGGG CTTCGGCGGG CAGGCCAATC AGGGCATCTA CATCTGGGCG CTGAAGGACT GGGCCGACCG CGACCGGAGC CAGGCCGAGG TGCAGCAGGA GGTGCAGGCG CGGCTCGATC CGGTGCCGGG GGTGCAGGGC TTCGTCTTCT CGCCGCCGAG CCTGCCGGGC ACGGGCGGCG GGCTGCCGAT CTCGATGGTG CTGCAGTCGA TCCAGTCGCC CGACCGCGTG TTCGAGATCT CGGAGGAGAT CCGCCGCCGT GCCGAGGCCT CGGGCCGCTT CATCGCGGTG CAGAACTCGC TCGCCTTCGA TGCGCCGGAG GTGGTGGCCA CCATCGACCG GGACCGGGCA GCGACGCTGA ACGTGCCGAT CTCGGACATC GGCAACACGC TGGGACTTCT GGTGGGCGGG GCCTCGGTCG CGCAGTTCGA CCGCGAGTCG AACAGCTACG ACATCATTCC GCAGGTGCCG CGCGACTGGC GCAACAATCC GGAACGGCTG AGCCAGTTCT TCGTGCGCGC CGCCTCGGGG GCGATGGTGC CGCTGACCTC GGTGGTGAAT TTCGAGACCG GCGCCTCGGC GGCCTCGATC GAACAGTTCA ATCAGCTCAA CTCCGCCACG ATCTCGGCCC TGCCGATGAT CGGCATCTCG ACCGGCGACG GTCTGGCCGA GCTGCAGCAG ATCGCTAACG AGGTGATGCC CGACGGCTTC TTCCTCGACT ATTCCGGCCA GTCGCGGCTC GAGGTCGAGC AGGGCAACAC GATCCTTCTG GCCTTCGCGG CGGCGGTGGT GGTGATCTAC CTCGTGCTCG CCGCGCAGTT CGAGAGCTTC CGCGATCCGT TCATCATCAT GATGTCGGTG CCGCTCTCGA TCTTCGGGGC GATCCTGCCG CTGAACCTCG GGCTCGGCAC GCTGAACATC TACACGCAGG TGGGCCTCAT CACGCTGATC GGCCTCATCA CCAAGCACGG GATCCTGATG GTGGAATTCG CCAACCAGCA GCGCGAGGAG CACGGGCTGA ACCGGCGGCA GGCCATCGTG GCGGCGGCCA AGGTGCGGCT GCGGCCGATC CTGATGACGA CGGCGGCCAT GGCGCTGGCG GTGGTGCCGC TCATCATCGC GGAAGGTGCG GGCGCCGAGG CGCGGCAGGC GATGGGGATC GTGATCTTCA CGGGCCTGCT GATCGGCACC TGCTTCACGC TCTTCGTGGT GCCGATGTTC TACACCTTCA TCTCGAAGCC GGACAAGGAA TGGCAGGCCC ATCGTGCGAT GCTGGAGGCG CGCGAGGCCT CGGCCTGA
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Protein sequence | MNISEIFIRR PVASTVLASF ILLIGLYSIF NLPVRQYPEV EETVVTITTT YPGASPDLIQ GFITAPIARA VATTENIDYV TSQSRPSASV VSVQMKLGAN SDVALTEVLA KVQQVRGELP SEAEDPVIVK GTGDNFALMY LAALNPNMSA EQMTEYLERV IRPRMSTIEG VAEIQIIGAA EYAMRVWIDP MKLAARNVTA SEVLTAIRAS NFLSAPGRTE GEYFARSIKL QSTLQTPEAF GALPIRSQGD EVVRLRDVAD VELASAEPDS IVTFNGQPGT FIGIFPTPAA NPLTTAAAVI EELPAINATL PQGMEINLVY DSTETITASI YEVFKTLAEA VAIVVVVILL FLGSFRSVLM PIVTIPLSLI GVCAVLLALG YSINLLSLLA MVLAIGLVVD DAIVVVENIH RHIDEGMSPY HAALKGMREI TGPVIAMTIT LAAVLAPLGF SGGLTGSLFA EFAFALAGSV IISGVVALTI TPMMSARLLK AGTGSRFQRI VDHTLEGTAN WYERRVSSSL DYRPVTLLMV AALVAVTGFM FMNTTSELAP EEDQGAMFAI LNGPRYATKE YTTLYTDRIS DVTKDIPEVR TEFSIAGFGG QANQGIYIWA LKDWADRDRS QAEVQQEVQA RLDPVPGVQG FVFSPPSLPG TGGGLPISMV LQSIQSPDRV FEISEEIRRR AEASGRFIAV QNSLAFDAPE VVATIDRDRA ATLNVPISDI GNTLGLLVGG ASVAQFDRES NSYDIIPQVP RDWRNNPERL SQFFVRAASG AMVPLTSVVN FETGASAASI EQFNQLNSAT ISALPMIGIS TGDGLAELQQ IANEVMPDGF FLDYSGQSRL EVEQGNTILL AFAAAVVVIY LVLAAQFESF RDPFIIMMSV PLSIFGAILP LNLGLGTLNI YTQVGLITLI GLITKHGILM VEFANQQREE HGLNRRQAIV AAAKVRLRPI LMTTAAMALA VVPLIIAEGA GAEARQAMGI VIFTGLLIGT CFTLFVVPMF YTFISKPDKE WQAHRAMLEA REASA
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