| Definition | Photorhabdus luminescens subsp. laumondii TTO1, complete genome. |
|---|---|
| Accession | NC_005126 |
| Length | 5,688,987 |
Click here to switch to the map view.
The map label for this gene is mcf
Identifier: 37527987
GI number:
Start: 4832190
End: 4841183
Strand: Reverse
Name: mcf
Synonym: plu4142
Alternate gene names: NA
Gene position: NA
Preceding gene: 37527988
Following gene: 37527986
Centisome position: NA
GC content: NA
Gene sequence:
>8994_bases ATGGTTTCTATATCCAAAGACTTCACGAACCTGCTCAATACCCTGATCGATGGACAGATTGAGGCAGCAAGTCGTCAGAC CGAATGGTTTAATATGAGGCCTGATGAGCGTGCCGACTACATCAGGCAGGTAGACGAGCGGTTACAGGAAATGCAGCAGA GTACGCTGAGTGTGCTGGCTGCTCAGCATTTTCAGATGCAGGACAGCCCCGTTTCTGTCGGCGACCAGTTGCAGACATTG CAGCAAAGACGGCAGCAGATGAACGATGTGCCCGGCACACCTGCGATCAACGCTTACAAGCAGCAACTGGACCGCGACAT CCTGTTATACAGCCGACAGCAGATGACCATAACGCATTTTGACGGCACTTGGCGTAAAGCTTTGACCATGCTCAATCCCG GCGGCTCTAAGACCTTGAATACGACGACTCTGAGAGAGAACGCGGCAGGCAAGCAGGTTAAGCTGGATATCAAGATCAAA CGTCTGGAACAGCAACTGACTATGCAGGTGGCTGCCTCCACGTTGTTCGGCCCAAAATACGTGATGCTGTTTTCCGAATT ACAGGCCTACAAGGAGGTCAATGCTCGCTACAACGCCTTACTAAAAGCATCCTCTACGGAAGAGGCCGCAGCTCTCGGCG GGCTGACCACGGTGCCTCCGGCCTCCGATGATCTGCCGGTAAATATTTCGTTGCTGATGATGGAGGAGCGTCCTGGCTAC ATCCGCATGAACGTCGCACTAGTTAATGCCAGCACCGATGGCCGCTTCAAAGATTTCTTCCTAGAGAACGGCAGATTAGT TGTGTCGGCGGACAAGGTATTCAACTTCTCCTTCGGTACCGCAGCCCGCTCCCTAGCCTGGCAACAACAATACCGGCTCA AGAGTGAGCCACCATCCTTTCGCTCGCCGACCTATGCGCCAATTCGCTCGGTGCTGGTCAAAACCGAATTCGTCGAGAAG TACTTCGCCAACTACCTAGTTTCGGAAAGCACCTTGCGTGAAGGCTTCAAGGCGCAGTTGCTGGGTAACGGTCGCAAAAT GCTGCTGACCAGCGTTGACCGTAAGGTGCCGAACCAGGTCGGGATTCAGATATCCGGCCAGGTTTCGAATACCACCATCA CCCGTGAGGTACCATTGGCAAGCGCCTTGAGTGACCTGATCAACCAGAATGCTGATATCGCTAGCTTCCAGACTATCGGC CTGGAGGGGTTTCGACAGAACGGTTACCATCCGGACCGTGACGGGCTTTTCGTTAATATCCATGAGCTGGAACGTTCAGT CGGTTTTGCCAGTCGTCAGTACTTGTTGGAAATGCCCCAGGGCAACGGTTACCTATCCGCGACGCCCTTTGGGGTGATGA ACGTTGACGACAACAAGGTCAGCAGCAGCCACTTGAGCAAGGCGCAGACCGACACACTGTATCAATACAACGCCGCATTT TTCGAGAAGCTGGAACAACTGCGTGACGGTGGTACGAAGGCCAGTCGTCTGTTCAAAGGCAGCGAAGATCGCAAGGCGTT CGAGCAGCAGCTGGTGCGTTTGCTCGAACGTAACCACATCACCCCCGCAGGGGTGTTGGCACCGGAGTACTTCCGTAACA ACATGCGCGATATCAAGGGTAATAACCTAAACAAAGCACTGTGGGAACAGGCGTTCGCCGCTTCGGTCTGGCGAAGCAGC GATAATGACCCGCTGCTGTTCGGGCTGGCGACGAGACTGGTGAAGAACCCGGCTGTGGTTAAGGTCTTGCAAAATGGCTA TGTGCAAAGTGACATTGTCCAGGCTAGGGGGCTATTGGCACCGTTGTACGAACAATGGCGCATTCGGGCCATCGAAGTGG AAATCCAGCGGGTTGCCAGCGCCAATGCGGCACAGCATCCAAGCAATCCGAAAGTACAGGTTTTCGATCAGGCTGCGGTT GATCGATCGCTGGACGACAAACTGCTCACTCTGTTACTGACTGGTTCCCAGGGACTTGAGAGCGCCGATGCGCAACTGCG TCCGGCGGTTGAGGCGGTGCTGTTGAGCAATGAGGGCAGGAGCTTACGCAAACAGGTCTTGTTCCATGCTTTGCGTCCAG TAGCCGATAGCTTTTCCAAGGCCGCGGTCCCGGTCAATCCTCACGCTGCGCTGGGTGACGGCAAGGTCATGATTAATAAC CGGCTGAATCAGCCCGATCCGTATCTGATCCTCAATACCAGCTCTGAGGAGCAGACGTATCACGAGGATTCGTACCTGAT CAAGGACGATAAATACCGCAGCTACAACCAGTTCCGTCCGGACCCGAAGAATGACGCTACACGCTACATGAATGACCTGG ACACCCCGTTCGTGGGGGGAATTTCCGGGACCACCCAGACCGTCAGTAATGCCTTACCGGAATTATTCGGTGGCGCGTTG AGCGTCAAGCAATATTGGCAATTCCAGATGGCCAATGCGGCCTTCATGATCCGTAACGGCTATCACTCGTTCTTCGAAAC CCTCTATGTCGCTGCGCGTTACGAACCAGAAGGTGCGGACAGTATCGGCAAGGACATGTTGCAGATGTTCGACAAGTACC GCGCCGAAGGCAGCAAGAGAGAGTTATGGGGTGAACTGTATGACGGAGTGATGGCGCGGGTCTTACCGATCATTAATCAG GGCTTGCCAGCGGCTGACGAATTCCATCCACCGCGTTTTACCTACATGGGTCCAAAACCGGCGCTGCTGGGGCAGGCGGT GAAGGATCTCGAACTCAAGGCTGGGCTGGTGTCTGTAGGTGATGGATTTGAGCCCCGACAAGGCAGTGCTGACATCCATC AGTTTGCCACTGATCCTGCACTGTTCGCCAAAACCCACACCATCAGTGCTGAGGTGCTGGTCAGGTCGGGGCACCTCCCG GCAAAGGGGAGTGCCCAGTTGGTGAAGGTCAGGTCAGGCTTATACGAGATCGAGTACACTAAACAAAATGCTAATAGCAT ATCTTCAAGTAGCGTGTCGGCGTACTTCCTCGGCTACAATGGCCTGAACCAGGCCAATGCGGTACCCGCTTATGTGGACA TTCCTAAGCATGTGGCCGCAGGGAGCTTTCTGTTCACCGGGACACTATCGGGCGGCTCGCTAGTGGTGACCAGCCTCGAT GACAATACCTACCGGGTCTACCACGATGGCCGGTTCAACAGCTCGCTGCTGTATGACAACGTGGTGATGGCGGTCGACTA CAAAGATTACCAGATATCCGATACCGCTGGGGGTTTTGCCGCAGCGTACATGCAGTACGTCAATGGTGAGTGGCAACTGG TGTTCCAGCGACAGGAATATCAACGAGATGGACAGATGGTTTGGCCGAAACTGCGCGGTGATGTGGAGCCGCTCTCAATC CAAATCGCCGGCAGTCAGGTGGTGGAGCGTAACCAAGCCGAATTCGCCACTTACCGCGAGCAGGTTCACCAACAACTGAA GACGGTGGCGACGCAGTTTGGGGTGTCGGTCGAAGGAGTTACCGACGGCGTCTACACCGAGGGGGAGTTTTCTCCTGAGC ATCCGGCGATTGCCGCATGGACCCGGTTGCGTGAAGCGGTTCAGGCCAAGGTCAAAGCCAACATGGACCCGGTGGCAGAT AAACTCTACCAGCTCCAGCAAGCACGACGTACCTCAAGTGATACGGCCTTGATCGACCAGCAGATCAAGCAACTCAATCT TACACAGGACTACTACAGGGCGCAGTATGATCCAATATTGCGTGAAGCCAGTTCTGTCGAAAAGACCTGGCTCTGGCAGC AGATCAAGGCCAAAGATGGCAGCGTTGCGGTGGTACAGATTGATGATACGGCCATTCAAGGCGAGGAGCGTACCAGCAGC GTGGGAGAACGTTACGCGGCCTCCGAGGTCTATCAGCGCGGGGCACAGGGTACCGGGTTCAATGATGGTTTGCGTAACTT CCGTGAGATCAAGATCCCCGGGGTGGATGACAAAATGTCGGTCTTGGAGATGAAGCGACGGTTTCTTGAGGGAAAACTCA CCCACGAGCAACGGGAAGCCTTGAGCGCTCGCATCGCCGAAATCAGCCAAGCCGAGTACATTGACAAGGTACTGCGACAG ACCGCAATGTTCAGTGAGGACTTCCATGATGCCGGCAGTGTCTTCAACCGCTTAGTACCACAGGACTTTTATCTGTCGCT GGTCGGTGACCGAACCGGTGGCCGTTGCTACCCTTTGGTCAGGACCATGGCTGTGGCATTGGCGGGTGGTGGGGAGGCCG GCATCAACAGCTTAGTACAAAAGCTGTTCTTCGCTTCCGCCGACCCGCAGGCGGGCAGCTCCACGCTGCTCAAGAACAGC CTGATCAGTCTGCACTACAATGTCGAAGCCGTTCAGGCTTCCACGGAGCTGGGCCAGTTCAATTTGTCCGAGGTGGTGTC GCGACTGGCCGCAACAACCGGCACTTCGATGTTTGCACTCAATACCCAGAATCACTCGATGATGGTAGGGAGCACTGTCA CGGCCGAAGGCCGTCGCTACTACTTCTATGACCCGAATGTTGGGATCTTTGCTTTCGACAACACCAAGAGTCTGTCCAGA GCTATGGAGCAGCACTTGGTAGTGCGCGGGCTGGCCGCGCACTATGGCTCGTTCGGCAGCAAGTCAGTGCCGGCCTTCAA CTTGATTGAGATCGATACCCGCAAGATGGCAGAGGTACCTGTAGGCAATGGCCTGAACGTGGCCGACCTGACCCGGTTCG AGGAATTGGCTAGTGTTATCGGGCAACGGCGGCAGGTCGAACAGGTGGTGAGTGTACAAGAGTGGGTCATGGAAGACTTG CGACTGAGCCCTGCACTGAAGACCTTTGATGCCGAGCAATGGGGTGCACGGTTCGAAGTCGCCAGTGCCCGGCTGGCGCA AGAGCACCAACTGGACAGCCGCTGGCTACCGATTATCGCTACGACGGAAGACCAGGGGGAAGGTCGCTACCGGGTCCAGT TCATTAACCGTGACCAACCCGAGCAGACCCGTTGGTTGATCACCAGCGATAGCACCTTTGTCGAATTCCGGCGCTTCATT GATGAGCACATGGCTGTACTGAACGAGCACTTTACCCTAGAGCATGGCCGGATGCGGCTCCGCGGTGGAGTTGGCGAGGC TGCTCCGGTGGATGGGTTGAACGCTGGGTTTGCGGTTCAGACGCTGATCCAGTGGTTTGCCGACAAGAACCGCCACGATG CGGCAAGCGGAGTGATTTCGCCTGATCTGGCCACCGCGCTCAAGGTCCATAGCTACCTCAACTTGGTCCAGATGGCTCAC GGTGGCGTACAGGATATAGCTAAGGTTACCGCGTTGGTGCGTACGGCGCTGCGCGGTGAAGTGGTGGCCGCTGAAACCTC GTTAAAGGACTTTGCTTCGAATCTGGGCCACACTGTCAATGAAGGTGCCGGTGTGTTGTTTGGAGGAGCTATGGTCGGTT TGGATGCTTATGAACTGGCCCACGCTGAGAACGATGTGCAGAAGGCGGTGTTCGGTACCCAGTTAGCGTTCGACTCGGCG AGCTTCGTCACTGGCGCAGCCGGGGTGGGGGCTGGGTTGGTCGGTGCTTCAACGGCCGGGGCGGTACTCGGTGGGGCCAG CGTAATCCTTGGTGGGCTCGCGGTGGGCTTTACGGCACTGGCTCAAGCCTTTGGTGCGGTCGCTGAGGATGCCAAGGCGG TAGGCCGTTACTTTGATACGGTCGACAAGGCGTACAAAGGCAACGGCTATCGTTATGACAACAAGAACAAGGTGCTGGTG CCTCTTGCCGGGGCGGTGATCAAGAGCCTTGACTTGCGCAAGCACCAGATCAGCTTCGACAGCCAGTACATCTACCGCAC CCATTCGGGTTCTACCGGTTCGGGGGAAATCAATTACTTCTTCTGGGTCGGTGACTTTCCGCGAATGGTCCATGACCGTG GTCAGGCGATTGAAGTGCGTAGCGGTATTGGTTACAAGGATATCTCCCGGCCTCTTGAACACAGTGACAGCAATGTCGTG ATCCTGCCGGGTACACCTAAGTCCTACATCAGCTACGAATACATGTTACTTCCCGGTGCTACCACACGCCATGATGCTGG CTTCGACGTGATCCGCAGGCTTGAGGAAGACAAACGATTCGACTACGACTTCTATATCTTTCCGGGTGAGGAGACAATCC GCAGGATTCATCATGAGTACGTCGACACCCCAATCGAGGTGGTGCTCGATCAGCGCAACCGGCAGCTGGTGGTGCCCGAG CTACCCAAAGAGCTGCACAGCTTTTTACGCTACGAGATCAAGGGAGCGGGTGGCGAGTACCTGATTGGCCTTAACGAAGG CACCCAAGTTAAGCTCACGAGCGATAGCGCCAGTGCATTGTCGCGCTGGATCATTGATAGCAGTCAACTCGCCAGTGACA GCATCAGCGTGTCGAAGAACCAACTGGTGGTTGGCGGGGTGGTAGTCGAACTTGACCCGACCCAGAACGGGCAGGTATTG GTGGTCAACGGCAAGGGCGAGGTACGAGAAGTTGACTTTGCCGGCCTGACAACTCAGGTGGTAAGCGAAGATGCGGGCAA GTGGCAGGTGCCCGGCCAGCAAATCGAGCAGCACCTGAGTGATCTGGCCAAAGCGCATCAGTTGCACGGGCAGTACGTAG TGGTGGAGAACTACAGCCACAACGGACGAGATGTTGGTCGAGCGTTCTATGATGTAGGCAAGGAGCGGATGTTGTTCACC AACACCACCCACGAGCAGACCAGACATGCCCAACTGGGTGCGGTGATGGGTGACCATGCCTATTTCTACGACGCCGACAA TGCGGCAGCGTGGCGGGTAGACATCGCCACCGGACAGGTCGACGCGCAATTTGAGCCTTGGTTTAATCAAAATGCGGGCC AGATCAGTCGGCTATGGCAGGAGGGAGATGCGGTCTACCTGGCACGCCGTTATCGACTAAAAGAGAAGGAGGCTGAATTA GAGAAGGAAGCTGAACTGTGCTATCGGATCCTCAGTGATCGAATGGAGTTGGTCAGTGCGGTGGGTGATGATGCGCTGAT CCAGCTTTTAGCACGTACCAGCCAGCATAGTGATGTGCTTAAGGCTATACTCCAGGGCTACGAGAGCAAAAGTATACAGC GTGAGACGCCGATGTATACGTTGGGCACACGGCTGCTCCAGCCGACCAGTGCGGCGCTGGTCACGGTGTTCGGCGTGGAT GCGGCTGGCGTGGCGCACCGTTACTGGATACGTACCGGCGATGGGACTCTAATCAAGCCGAATCTGGCACCACCGGCAGA TCAGACCCCGCACTTTAAAGAGAACGAACAAACCCGCAGTGCCTGGCCGATCCCGGCCGACTTGGTGTTAGCGGGGAGCA TGCCGCAGCCCGGCGGTAAAGAGGTGTTTTTCTTCTACAGTAAAGAGCAAAAGGTTCTGTTCCGACAGGAAGGTCCCGGG CAGGCTGTTCTCGACGCTAGCCATCCCACTGCATTGCGCATCAGTACTCCAGCGTTAGCCAACTTGGTCAACCTGAACGG TAGCCTGCTTGCCATCACCGAGGATGGGCGTGTGGCTCGGCTCGATGCACTGGGGCAGCTTAACTACGAAGCGGTTAATG AGCATTGGCTCAAGGGACGTACCCACTGGTGGCAGGACCTGGCTAGCGTCGCCGACGGCAGAGCTACTTTGGCGGTGTTC GGAATCAAGGGTACCGACGGCAAGAGCCTGCTGCCAGTGTGGTACCACAAGGGTCAGGTAATAGTGGCCTCGGCTCCTCT GCAAGACAAACGTTTGCAGTTCTTGGGTTTTGAAGTGGATGGCTCCGGTGCGCGGCTGTTCGAACCCGCCAGCGGCAAGT TGTATCGTCAGCCGCCTATGACTGCCGATGCGCTGGCTGCCGCGTTTGGTACCGACGAGGTGCTTGAAGTCTCGTCACAG CTTCCCGCCGCCGGTGAGCTGGCGTCTGGACTGCACCTCAAGGCGGTGGAGCAAGTCGATGTCGGGCTACGACTGACCAC CGTCAAAGGTGAGATCCTATTGCAAACCAATGACGGCAAATTGCAGCTAGTCGCCGTCGATAAAGGCTGGCAGCAGGACA ACTTCGCTCGTCTGCCACAGGCACTTGCTGAGGTTGCTGATAAGTGGCGAACCAAAGGCGTGCTGACCTTGCAAGGCGAT GACACACAAGGTTGGTTCGATGTCGGCAGTGGTCAAGTGTTCTCCTACGGTAGCATCCAGGCTAAAGACAATCTGCGTTT CATCGGAATTGCTGCCGGGAAGAAGGGCGCGTATGTGTACAGCCCAACGGACCAGGCACTGTACCGGGTCAAGGATGATA GTGTGCAGAAGCTGAATCATTACACTAGTGTCGAGCGTATTGGTTCGTCGCTGTTGATTCGGGGCGGGGGTACGGGTGGT CGCCGGGACGACTTGACCCCACCGCTGATCACCGGTGTCGACAGTGTGGTGTTGCATGGCGGTGCTGATAACGATACCTA CCGCCTCAGCCAAGAGATGTGGTCGCATTACCGCACGGTTATCATTGACAACGATGACCCGGGCCAGGCTCTGGACCGCT TGATCATGCCGATGGTTGATGCGGAAAAAATCCTCGTTAGTCGCCATGAGGATAACTTGATGCTGACTGACTCGGCCAAT GGCACGACCTTGGTGGTGCGCAAGGTGTTCGGTAGCCAGGCGGTGACGCACCAGCATTTGCAAATCGAACTGGAAGGTTC TTCGTCGGTGATGGGAGTGGACCATCTGGTCAAGAACTTTATCCAGAAGAGTTACATTAATGGGGAGCTGGTAGAACTGT CTTGGGCCAGTAGACAGCCCGTCATCGAGCCTCATGTGATTCATTCCGTTGCCGCAGTCCCGGACACGGGAGGGCCGAGC CTAGCGAAGCTGAGCGGGGCTATGGCTTCGTTCCCTGATATCGGCGGTGCCCGCGAGCACCTGCCGCAAAACCGTCAGTC CGCGCCGGCGGCGCTGGTGCCACCGCTGTCTTGA
Upstream 100 bases:
>100_bases GTCGGGAAGAATGTCAAATCTGTATCGACAAACGACAAACGACAAACAGCTTTTCGCAGCGCGAAGGGTTTCGCTTAAAA ACAGGCAAAGGAGCATTGCA
Downstream 100 bases:
>100_bases GTTAGCCGGAGAAACTACAGGAGGGGCGCAAAGCCCTTCCTGTCTCCGGACTCTGGTCGAATCATTCCTCTTGTAGTAGA AGCAGATCATGATCAAATCC
Product: Mcf protein
Products: NA
Alternate protein names: NA
Number of amino acids: NA
Protein sequence:
>2997_residues MVSISKDFTNLLNTLIDGQIEAASRQTEWFNMRPDERADYIRQVDERLQEMQQSTLSVLAAQHFQMQDSPVSVGDQLQTL QQRRQQMNDVPGTPAINAYKQQLDRDILLYSRQQMTITHFDGTWRKALTMLNPGGSKTLNTTTLRENAAGKQVKLDIKIK RLEQQLTMQVAASTLFGPKYVMLFSELQAYKEVNARYNALLKASSTEEAAALGGLTTVPPASDDLPVNISLLMMEERPGY IRMNVALVNASTDGRFKDFFLENGRLVVSADKVFNFSFGTAARSLAWQQQYRLKSEPPSFRSPTYAPIRSVLVKTEFVEK YFANYLVSESTLREGFKAQLLGNGRKMLLTSVDRKVPNQVGIQISGQVSNTTITREVPLASALSDLINQNADIASFQTIG LEGFRQNGYHPDRDGLFVNIHELERSVGFASRQYLLEMPQGNGYLSATPFGVMNVDDNKVSSSHLSKAQTDTLYQYNAAF FEKLEQLRDGGTKASRLFKGSEDRKAFEQQLVRLLERNHITPAGVLAPEYFRNNMRDIKGNNLNKALWEQAFAASVWRSS DNDPLLFGLATRLVKNPAVVKVLQNGYVQSDIVQARGLLAPLYEQWRIRAIEVEIQRVASANAAQHPSNPKVQVFDQAAV DRSLDDKLLTLLLTGSQGLESADAQLRPAVEAVLLSNEGRSLRKQVLFHALRPVADSFSKAAVPVNPHAALGDGKVMINN RLNQPDPYLILNTSSEEQTYHEDSYLIKDDKYRSYNQFRPDPKNDATRYMNDLDTPFVGGISGTTQTVSNALPELFGGAL SVKQYWQFQMANAAFMIRNGYHSFFETLYVAARYEPEGADSIGKDMLQMFDKYRAEGSKRELWGELYDGVMARVLPIINQ GLPAADEFHPPRFTYMGPKPALLGQAVKDLELKAGLVSVGDGFEPRQGSADIHQFATDPALFAKTHTISAEVLVRSGHLP AKGSAQLVKVRSGLYEIEYTKQNANSISSSSVSAYFLGYNGLNQANAVPAYVDIPKHVAAGSFLFTGTLSGGSLVVTSLD DNTYRVYHDGRFNSSLLYDNVVMAVDYKDYQISDTAGGFAAAYMQYVNGEWQLVFQRQEYQRDGQMVWPKLRGDVEPLSI QIAGSQVVERNQAEFATYREQVHQQLKTVATQFGVSVEGVTDGVYTEGEFSPEHPAIAAWTRLREAVQAKVKANMDPVAD KLYQLQQARRTSSDTALIDQQIKQLNLTQDYYRAQYDPILREASSVEKTWLWQQIKAKDGSVAVVQIDDTAIQGEERTSS VGERYAASEVYQRGAQGTGFNDGLRNFREIKIPGVDDKMSVLEMKRRFLEGKLTHEQREALSARIAEISQAEYIDKVLRQ TAMFSEDFHDAGSVFNRLVPQDFYLSLVGDRTGGRCYPLVRTMAVALAGGGEAGINSLVQKLFFASADPQAGSSTLLKNS LISLHYNVEAVQASTELGQFNLSEVVSRLAATTGTSMFALNTQNHSMMVGSTVTAEGRRYYFYDPNVGIFAFDNTKSLSR AMEQHLVVRGLAAHYGSFGSKSVPAFNLIEIDTRKMAEVPVGNGLNVADLTRFEELASVIGQRRQVEQVVSVQEWVMEDL RLSPALKTFDAEQWGARFEVASARLAQEHQLDSRWLPIIATTEDQGEGRYRVQFINRDQPEQTRWLITSDSTFVEFRRFI DEHMAVLNEHFTLEHGRMRLRGGVGEAAPVDGLNAGFAVQTLIQWFADKNRHDAASGVISPDLATALKVHSYLNLVQMAH GGVQDIAKVTALVRTALRGEVVAAETSLKDFASNLGHTVNEGAGVLFGGAMVGLDAYELAHAENDVQKAVFGTQLAFDSA SFVTGAAGVGAGLVGASTAGAVLGGASVILGGLAVGFTALAQAFGAVAEDAKAVGRYFDTVDKAYKGNGYRYDNKNKVLV PLAGAVIKSLDLRKHQISFDSQYIYRTHSGSTGSGEINYFFWVGDFPRMVHDRGQAIEVRSGIGYKDISRPLEHSDSNVV ILPGTPKSYISYEYMLLPGATTRHDAGFDVIRRLEEDKRFDYDFYIFPGEETIRRIHHEYVDTPIEVVLDQRNRQLVVPE LPKELHSFLRYEIKGAGGEYLIGLNEGTQVKLTSDSASALSRWIIDSSQLASDSISVSKNQLVVGGVVVELDPTQNGQVL VVNGKGEVREVDFAGLTTQVVSEDAGKWQVPGQQIEQHLSDLAKAHQLHGQYVVVENYSHNGRDVGRAFYDVGKERMLFT NTTHEQTRHAQLGAVMGDHAYFYDADNAAAWRVDIATGQVDAQFEPWFNQNAGQISRLWQEGDAVYLARRYRLKEKEAEL EKEAELCYRILSDRMELVSAVGDDALIQLLARTSQHSDVLKAILQGYESKSIQRETPMYTLGTRLLQPTSAALVTVFGVD AAGVAHRYWIRTGDGTLIKPNLAPPADQTPHFKENEQTRSAWPIPADLVLAGSMPQPGGKEVFFFYSKEQKVLFRQEGPG QAVLDASHPTALRISTPALANLVNLNGSLLAITEDGRVARLDALGQLNYEAVNEHWLKGRTHWWQDLASVADGRATLAVF GIKGTDGKSLLPVWYHKGQVIVASAPLQDKRLQFLGFEVDGSGARLFEPASGKLYRQPPMTADALAAAFGTDEVLEVSSQ LPAAGELASGLHLKAVEQVDVGLRLTTVKGEILLQTNDGKLQLVAVDKGWQQDNFARLPQALAEVADKWRTKGVLTLQGD DTQGWFDVGSGQVFSYGSIQAKDNLRFIGIAAGKKGAYVYSPTDQALYRVKDDSVQKLNHYTSVERIGSSLLIRGGGTGG RRDDLTPPLITGVDSVVLHGGADNDTYRLSQEMWSHYRTVIIDNDDPGQALDRLIMPMVDAEKILVSRHEDNLMLTDSAN GTTLVVRKVFGSQAVTHQHLQIELEGSSSVMGVDHLVKNFIQKSYINGELVELSWASRQPVIEPHVIHSVAAVPDTGGPS LAKLSGAMASFPDIGGAREHLPQNRQSAPAALVPPLS
Sequences:
NA
Specific function: NA
COG id: NA
COG function: NA
Gene ontology:
Cell location: NA
Metaboloic importance: NA
Operon status: NA
Operon components: NA
Similarity: NA
Homologues:
NA
Paralogues:
NA
Copy number: NA
Swissprot (AC and ID): NA
Other databases:
NA
Pfam domain/function: NA
EC number: NA
Molecular weight: NA
Theoretical pI: NA
Prosite motif: NA
Important sites: NA
Signals:
NA
Transmembrane regions:
NA
Cys/Met content:
NA
Secondary structure: NA
PDB accession: NA
Resolution: NA
Structure class: NA
Cofactors: NA
Metal ions: NA
Kcat value (1/min): NA
Specific activity: NA
Km value (mM): NA
Substrates: NA
Specific reaction: NA
General reaction: NA
Inhibitor: NA
Structure determination priority: NA
TargetDB status: NA
Availability: NA
References: NA