Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | PA14_49160 |
Symbol | |
ID | 4380129 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Pseudomonas aeruginosa UCBPP-PA14 |
Kingdom | Bacteria |
Replicon accession | NC_008463 |
Strand | - |
Start bp | 4365841 |
End bp | 4369203 |
Gene Length | 3363 bp |
Protein Length | 1120 aa |
Translation table | 11 |
GC content | 67% |
IMG OID | 639326520 |
Product | putative sensor protein |
Protein accession | YP_792085 |
Protein GI | 116049113 |
COG category | [T] Signal transduction mechanisms |
COG ID | [COG3447] Predicted integral membrane sensor domain |
TIGRFAM ID | [TIGR00229] PAS domain S-box [TIGR00254] diguanylate cyclase (GGDEF) domain |
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Plasmid Coverage information |
Num covering plasmid clones | 19 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | 22 |
Fosmid unclonability p-value | 0.0000588584 |
Fosmid Hitchhiker | Yes |
Fosmid clonability | hitchhiker |
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Sequence |
Gene sequence | ATGTTCAGTG GCAAAACCGA CGACAGGGGC TTGTGGGCGG GCATCCAGGC CGGTGTGCTG TTCTTTCTCG CCGCCCTGGC CTGCATCTAC CTGTCGCGCC AGCCTGCCAC CATCGCGGCG ATCTGGCTGC CCAACGCGAT CCTCACCGCC GCCCTGCTGC GCGCGCCGCT GCGCCAGTGG CCGGCGATCC TGCTCTGCTC CGCCGTGGCC AACCTGGCGG CCAACCGCCT GTATGGCGAC AGCCTGTGGA TGAGCGCGGC GTTCCTGCCG GCCAACCTGA GCGAAGCGAT CTTCGCCGCG ATGCTGTTAC GCATCAACCG GGTGCGCGAG GACTTCGAGT TCAACCTGCA TTCGGCGGTT CGCGTGCTCT GGGCCGGCGC GCTGATCCCG CCCTTGCTCG GTGCCTCGGT GGGCGCGGTG CTGGTCAGCG TCTTCGGCAT GGGGCGTTTC CCGGAAATGT GGGCGCGCTG GTACGTGGGC GATGCGATGG GCATGCTCGC GCTGCTGCCG TTGTGCATGG CCAGCAACCT GGCGGCCTGG CGTCACGCTC TGTCGGGGCG GGCGGGAGTG GACAACGCGA TGCTCCTGCT GGTGACCCTG GTGATCAGCT TCGTGGCCCT GACGCGCCTG CCCTACGCCT TCATCTACGT GCTCCTGCCG CTGCTGGTGG CCGCCGCCAG CACCAGCGTG TTCGGCACCG CGCTGATCGG CTGCCTGAAC ACCTGTTTCA TCGCCGTGCT GATCGCCCTC GGCGTGTTCG TCCCCGAGTC GTCCCAGCAG CGTTTCGGCG AGCCGCTGCT GTACCTGCCG ATGGCCTTGA CCCTCATTCC CGCCTTCCTG GTCTCGGTGA TCATGGAGCG CAGCCGCCGC GAGCAGCATC AGGTGGCCAT CGGCGAGGCG CAGTTCCGCG GCGCCATGGA ATTCTCGGCG ATCGGCATGG CCCTGGTGTC GCTGGAGGGG CGGCTGTTCA AGGTCAACGA GGCGCTGTGC CGGATGCTCG GCTATTCCGC CGAACGCTTG GGCGAGCTGT CGTTCCAGGA GATCACCTAT GTGGACGACC TGGAACTGGA CCTCGACCTG GTGCGCGACC TGCTCGCCGG GCGTATCAAC TCCTACCAGA TGGAGAAGCG CTACCTGCGC CAGGACGGCG AAACCTTCTG GGCGCGCATC AGCGTGTCGC TGGTGCGCGA TGAGGAGGGA GTCGCCCAGT ACTTCGTCAC CCAGGTGGAG GATATCGACA GTCGCAAGCG TGCCGAGCTG GAGCGCGAGC GCCTCGCCGA ACGGATCAAG CTGGCCACCG ACGCCGGGCA GATCGGCATC TGGGAGTGGG ACCTGGCGCG CAACCGCCTG CACTGGGATT TCCGCATGTT CGACCTGTAC GGCATCCGCA GCGGTCCCGG GGAGACCACG GTGGAGCAGT GGAAGGCGAG CCTGCATGCC GAGGATCACG ACCGCGTGCT GCGCGAGCTG GAGCGCGCCG TCAGCGGGTT GCAGAAATTC GACTGCGAGT TCCGTATCGT CCGCCCCAAC CGCGAGGTTC GCCACCTGCG GGCGATCGCC ACGCTGACGC GCGACGAGGA CAACCGTCCG GTGCGGATGA TCGGCATCAA CAGCGACATC ACCGAGATCC GCACCCTGGC GGAAACCCTG CACGAGGAAA AGGAACGCTT GCAGGTGACC CTGTATTCCA TCGGCGATGC CGTGTTGACC ACCGACGCCG GCGGCCGCGT GACCTTCATG AACCCGGTGG CCGAGGCGAT GACCGGCTGG ACCTTGCAGG ACGCCATCGG CGCGCCCCAC GAACTGGTCT TCAACGTGCT CGACAGCGAC ACCGGCGAGG CCCTGGAAAG CCCGGTGCGA CGCTGCCTGC AGAACACCCG GGTGTTCTAC CTGGAGGACG GCGCCACGCT GATCAGCCGC AAGGGCGAGC AGCACGATAT CCAGAATTGC GCGGCGCCGG TGCGCACCCG CGATGGCGAG ATCATCGGCA CCGTGCTGGT GTTCCAGAAC GTCACCAAGG CCCGGGCGAT GCAGCGCGAG CTGAGCTATC ACGCCTCCCA CGATGCCCTC ACCGGGCTGT TCAACCGCAC CAAGTTCGAG GAGGAGCTGC AACGCGCCCT GGCCAACGCC CAGGAGCGGG CGACCCAGCA TGCGCTGTGC TTCATCGACC TCGACCGCTT CAAGGTGGTC AACGATTCCG CCGGGCACGC GGCGGGCGAC ATGCTGCTGC GCGAGCTGAG CCGGATTCTC GCCGACCGTA CCCGCGCCTC CGACACCCTG GCGCGGCTGG GCGGCGATGA GTTCGGCCTG CTGCTGTTCG ATTGCGACCT GGCGGAGGCG GAGCAGGTGG CGAGCAAGCT CATCGAGCAG ATCTGCTCGG TGCGCTTCCC CTGGGAAGGG CGGCTCTACG ACGTGGGCGC GAGCATCGGT ATCACCGCCC TTACCGCCAC CTCGCGCAGC ACCAGCGAAC TGATGAGCCA GGCCGACGTG GCCTGCTACG CGGCCAAGCA TGCCGGGCGC AACCGGGTTT CGGTGTACCA GTTCGGCCAT GAGGAAGTGG AGCGCCAGCA CCGCGACATA CTCCTCGCCA GCGGGCTGCG CGAGGCCCTG GAGAACGACC GCTTCCAGTT GCAGGCGCAG GAGATCGTCC CGGTCGGCCC CCGCCGCGAC GGCGACCGGC ACTACGAGCT GCTGCTGCGA CTGTACGATC CGGATGGCCA GATGACTCCG CCGGGCGCCT TCATCCCGGC CGCCGAGCGC TTCAACCTGA TGGCCAGCAT CGACCGCTGG GTGATCAACG AGGCGCTGAT CAACTTCGGC GCGCGGATCG CCGCGGTGGA GGGCCTGAGC ATCGGCATCA ACCTGTCCGG CAACTCGCTC AACGACCCGC TGTTCCTGCC TTACCTGCTG GATCGCATCG AACACTCGCC GCTGAGGCCG GAGCGCCTGT ACTTCGAGCT GACCGAGACG GCGTTGATGA ACCAGTTGTC GGTGGCTTCG CGGATCGTCG CCAAGCTGCG CGACCTCGGC TGCAAGGTGG CGTTGGACGA CTTCGGCTCC GGCCTGAGTT CCTTCAATTA CCTGAAGAAT TTCGTCGTCG ACGTGATCAA GATCGACGGC AGCTTCGTCC GCAACCTGGA CAAGAGCCCG GTGGACCAGG CCATCGTCGA CTCCATCAAC CAGATCGCCC ACCGCCTGGG CGCGGTGACC GTGGCCGAGT TCGTCGAGAG CCGGGAAATC CTCGATCACC TGGCGCGCCT CGGGGTGGAT TTCGCCCAGG GCTACGCGGT CGGTCGGCCG CAGCCGTTCG CCACGGTGCT CGACCAACTG CGCAGCGGGC TTCGTCGCCA GGAGTTGGGC TGA
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Protein sequence | MFSGKTDDRG LWAGIQAGVL FFLAALACIY LSRQPATIAA IWLPNAILTA ALLRAPLRQW PAILLCSAVA NLAANRLYGD SLWMSAAFLP ANLSEAIFAA MLLRINRVRE DFEFNLHSAV RVLWAGALIP PLLGASVGAV LVSVFGMGRF PEMWARWYVG DAMGMLALLP LCMASNLAAW RHALSGRAGV DNAMLLLVTL VISFVALTRL PYAFIYVLLP LLVAAASTSV FGTALIGCLN TCFIAVLIAL GVFVPESSQQ RFGEPLLYLP MALTLIPAFL VSVIMERSRR EQHQVAIGEA QFRGAMEFSA IGMALVSLEG RLFKVNEALC RMLGYSAERL GELSFQEITY VDDLELDLDL VRDLLAGRIN SYQMEKRYLR QDGETFWARI SVSLVRDEEG VAQYFVTQVE DIDSRKRAEL ERERLAERIK LATDAGQIGI WEWDLARNRL HWDFRMFDLY GIRSGPGETT VEQWKASLHA EDHDRVLREL ERAVSGLQKF DCEFRIVRPN REVRHLRAIA TLTRDEDNRP VRMIGINSDI TEIRTLAETL HEEKERLQVT LYSIGDAVLT TDAGGRVTFM NPVAEAMTGW TLQDAIGAPH ELVFNVLDSD TGEALESPVR RCLQNTRVFY LEDGATLISR KGEQHDIQNC AAPVRTRDGE IIGTVLVFQN VTKARAMQRE LSYHASHDAL TGLFNRTKFE EELQRALANA QERATQHALC FIDLDRFKVV NDSAGHAAGD MLLRELSRIL ADRTRASDTL ARLGGDEFGL LLFDCDLAEA EQVASKLIEQ ICSVRFPWEG RLYDVGASIG ITALTATSRS TSELMSQADV ACYAAKHAGR NRVSVYQFGH EEVERQHRDI LLASGLREAL ENDRFQLQAQ EIVPVGPRRD GDRHYELLLR LYDPDGQMTP PGAFIPAAER FNLMASIDRW VINEALINFG ARIAAVEGLS IGINLSGNSL NDPLFLPYLL DRIEHSPLRP ERLYFELTET ALMNQLSVAS RIVAKLRDLG CKVALDDFGS GLSSFNYLKN FVVDVIKIDG SFVRNLDKSP VDQAIVDSIN QIAHRLGAVT VAEFVESREI LDHLARLGVD FAQGYAVGRP QPFATVLDQL RSGLRRQELG
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