| Definition | Burkholderia mallei ATCC 23344 chromosome chromosome 1, complete sequence. |
|---|---|
| Accession | NC_006348 |
| Length | 3,510,148 |
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The map label for this gene is wcbR
Identifier: 53725835
GI number:
Start: 2372945
End: 2380585
Strand: Reverse
Name: wcbR
Synonym: BMA2289
Alternate gene names: NA
Gene position: NA
Preceding gene: 53725834
Following gene: 53725836
Centisome position: NA
GC content: NA
Gene sequence:
>7641_bases ATGGTTAACACTAAGATCGCAATTATCGGTGCGTCTTGCCGATTCCCCGGCGGCGTTGCCGGGCTGGAAGAATACTGGCA ATTGCTCAAGAGCGAACGCGACGCAGTAACCGAAATCCCGCCGGAGCGCTTCGGCACGGACTTTTACCGGCACCCGTCCA AACGCGAACCGGGCAAGAGCTACACGTTCTCGGCCGGCGTTCTCGATAACGTTGCGGGTTTCGACGCCGCGTTCTTCGGC ATTTCCCCGCGCGAAGCCACCCAGATGGACCCGCAGCAGCGCTTGCTGCTCGAACTCGCGTGGGAAGCGTTCGAGGATGC GGGGGTGCGCCCGGCCGACATGCGCGGCAGCAATTGCGGCGTCTATGTCGGTGTCGCGGGCACCGACTACGGCAACCGCA GCATGGACGATCTGAACGCGATCGATCCGTATTCGGCGACCGGCAACACGCTGAGCATCGCGTCGAACCGCGTGTCCTAC CTGTTCGACCTGCGTGGCCCGAGCATGTCCGTCGACACGGCCTGCTCGTCATCGCTCGTCGCACTTCATCAGGCTGTCCA GGCGCTGCAGTCCGGCGAAGCGGAAACGGCGCTCGCCGGCGGCGTCAACCTGCTGCTGCACCCGTTCGGCTTCGTCAGCT TCTCCAAGGCTTCGATGCTCTCGCCGCGCGGCCGCTGCCGCGCGTTCGATGCGACCGGCGACGGCTACGTTCGCGCGGAA GGCGGTGCGTTCGTGCTGCTCAAGCCGCTTGACCGCGCGATCGCCGACGGCGACACGATCCATGCGGTGATCGCCGGCTC CGGCGTGAATTCGGTCGGCCACTCGCCGGGCGGCATCAGCGTGCCGGGCGCGGCGGCGCAGGCGGCGCTGCTGCGTAGCG TCTACGCGCGCGCGGGCGTCGATCCGCAGTCTCTCGCCTACCTGGAGGCGCATGGCACCGGCACGGCGGTCGGCGATCCG ATCGAGGCGCGCGCGCTGATCGACGTCGTGTCGGGCGCACGCCCGGCGGACCGCCCGCTGCTCATCGGCTCGGTGAAGAC CAACATCGGCCACCTCGAGACGGCATCCGGGATGGCAGGCCTGCTGAAGGCCGTGCTGTGCCTCAAGCATCGCGCGGTGC CGCGCTCGCTGCATTTCTCCATTCCCAATCCGGCCATCGATTTCGACGGCGGGCGCCTGCGTGTCGTCGATCGCTATATG CCGCTCGAAGCCGGCAATGCCCCCCTGACCGTCGGCGTCAACTCGTTCGGTTTCGGTGGAACGAACGCGCACATTGTGCT GACCGAGGCGCCGGTGTCGGCGGCGGTCGCGGACGATGTGCCGACGAGCGCGACGCAAGCCGCCCGCGCACCGTCCGCGC TCGTGCTGACTGCGCGCAGCCCGAACGCGCTCGGCGCGCTCGCGAACCGCTATCTGGCGGCGCTCGAGAACGGCGGCGAC TGGCAGGCGCTGGCCGCGGCGGCCGCGCGTCGTCGCCAATGGCTCGAGCATCGCGCGATCGTCGCGCCGGCCGACGCGGC CGAAGGCCGCGCGGCACTCGCGGCGCTGGCGCGGCCGGCGCCGGAAGGCGGGCCGAGCTGCGTGACGACCGGCCGGGCGC CCGCCGACGCGCCGCGCACCGCGCTTGTCTTCTCGGGCAACGGTTGCCAGTGGGTCGGGATGGGCAACGCGCTCTATGCC GAGGACGCCGTCTTCCGTGCGGCGCTGGACGAGGTCGACGCGCTGTGGTGCGCCGACGGCAGCCCGTCGCTGGTCGACGT GATGCGCGGCGGCCCGGGCGCGCAATGGCTGGCCGGTGCGGGCGCCGAATGGCTCGCCGCGACGGAGAACGCGCAGCCGC TGCTGTTCGCGATCCAGGTCGGCATGATCCGCGTGATCGATGCGCGCGGCATGCGCTACGACGCGGCAATCGGCCACAGT GTCGGCGAAGTTGCCGCGGCGTGGGTAACGGGCGCGTTGTCGCTCACCGACGCAGTGCGCGTGATCAAGATTCGCAGCCG CGCGCAGGCGATGACGCGCGGCTGCGGCCGGATGGCGGCCGTCGGTATCGGCGACGCGGCGGCGCGCGAGCTGATCGCGC GCCACGGGCTGGCGCGCCGTGTCGAGATCGCCGGCGTCAACAGCCCCGATGCGGTGACGCTCGCGGGCGAGCCGCAGGGA TTGCAGGTGCTGGAGGCTGCGCTGCGCGGCAGCGGCAAGTTCTTCCAGATGCTGGATCTCGACTACGCGTTCCACAGCAG CCACATGGACCGCATCGAGCCGGTCGTATTGGCCGGACTGGCCGGCCTGCGGCCGCAACCGGGCAACGGCGCGTTCGTAT CGACTGTGACCGGCGGCGCGCTCGCCGGCAGCGAACTCGATGCGCGCTACTGGTGGCGCAATATCCGCGAGCCCGTGCGC TTCGGCGACGGCATCGCCCATCTGATCGAACAGGGTGTCCGGCTGTTCGTCGAGGTCTCGCCGCATTCGATCCTGCGCAC CTACGTGAAGCAGGCGCTCGCGGCGGCCGGCGTGACCGGCGTGGCGCTGCCGACGCTCAAGCGCGATCACGGCAGCGCGG CGACGCTGCGGCAAGCGATTCTCGCGGCGATCGCGCATGGCGCGAGCGTCGATCCAGACCGCTTCGCGCCGGGCGCGTCG CGTGCCGCGTTGCCGTCCTATCCGTGGCAGCGCGAGCGCTTCTGGCTGACGCCGACCGTCGAAGGCTACGGCCTCGTCAA CCGCCGCCGCGAACATCCGCTGCTTGGCTATCGCCTGCACGAACACGCGTTCGCGTGGGAAAACCAGCTCGATCCGGCGA AGCTGCCGATGCTCGCCGATCACGTCGTGGATGGCGGCGTGGCGTTTCCGGGCGCCGGGTACGTGGAAATGGCGCTCGCC GCGGCGTGCACCTTCTTCGATACGCCGGATGCGGCGCTCGAGAACGTCGAGATTCGCATGCCGGTCGTTTTCCAGCCGCA GCAGGCGAAGCTGTTCCGGCTCGTGATCGAGCCGCGCACCGCGACCTTCACGATCGAGACGCGCGACCGGATGTCCGACG GCGCATGGACGCTGAACGTGACGGGGCGGATGCTGGAAAGCGGCAACGCGCTCGGCACGGCGAGCGTCGTGCCGTCCGAC ATGCTCGAGCGCCTGCTCGCGCTGCCGGCCGCCGACGGCGACATGCTGTACGCGAACACGGCGGCGATCGGCCTCGGCTA CGGGCCGGCGTTTCGCTGGGTTCGCACGGTGCGGCTCGCCGAAGGCGACGACGCGGCGCTCGCCGACGTCGCCGCGCCGG ACGCATGTGGTGACGCGCGCACGCTGTCCGCTTATCGGTTGCATCCGGCGCTGATGGACAGCGGGTTTCATCCGCTGTTC GCATTGCTCGCCGCGCACGCGCGCGACGGCGAGCATCCGGCCTACGTGCCGGTGCAGATCGGCCGGGTCGACTATCTGCG CGGCGATACGGTTGCCCGCGTGCTCGCGCGGATCGACCGGCGCAGCCCGCATTCGATCGTCGCGCATTTTGAATTCCTCG ACGCGCAGGGCGCGATCGTCGCGCGGCTCGGCGCTTGCCGGTTTCGGCGCGTCGATCTCGTCGGCCGCCGGCAGAACCTG CCCGCGCGCTTCGTCTACCGTCTCGAAGCAATGCCGCTGCCGGGCGATGTCGACGCAGCCGGTTTGCCGGCGCCCGACGC GCTGCTCGCACGAGCCGTCGCGCGGCTCGATGCCGGACACGACGGCCGGCGTACGCGGCATCTGACCGAAATCCTGCCGT TGCTCGACGTGCTGGCGAGCCTCTACGTGCTTCAGGCATTCGATGCGCTCGGCGCATTCGCCGGCACGTGGCGGCCGGCG CACGGGTGCGCGGCGCTGGCCGCGCGTCTTGCGGACATGCTCGTCGAGGACGGTCTGGCGCATCGTGACGGCGATCGTCT CGTGCGCGACGACGCGGCATGCGCGGCGCTGCCGCCACTCGACGAATTGTGGCGCGGGCTGCTGGCCGAGTCGCCGGCGC ACGTGGCCGAGCTCACGCTGCTCGCGCATTGCGGCTCGGCGTTGCCGGGCGTGCTGAGCGGCGCGAAGGACGGCACACGT CTGCTGTCGCCGACCGGGCACAGTCTGGTCGAGCATCTCCTCGCGGCCTCGCCGACCTGGCAGCACGTGTATGCGCTGCT GACGGCGAGCGTCGAGCAGGCGGTCGACGCGTGGCAACCGGCGCGCCGGTTGCGCGTGCTCGAACTGGGGGCGACGGACG GCGATGTGCTGCAGACGCTCGGCATGCATCTCGCGCCCGCGCGCTGCGATCACACGATCGCCGCGACGGCCGGTCAACTG GCCGGGTTCGGCGCCGATGCGCAAGCGGCGGTGACGACGGTGGCGCTGCAGCCGGGCGAACGGCTGTCGCTGGCGGCCGA CGAAGCCGGGCCCTACGACGTGATCGTCGCGAATCGCGCGTTGAGCGGCCGTCGGGACGTGGCCGACGCGCTGAACGCGA TGCGGTCGTGGCTGGCCCCGGGCGGATTGCTGCTGCTTGCCGAGTCGCGCCGCGGCCGTTTCTCCGACATCGTGTTCGGC ATGCAGGCGCCATCGACGCAAACCGATGCGCCCGCACCGCTCGCGCCGGCGGATCTCGAGGCGGCGCTCGCGCACGCGGG TTACGTCGGCGTCGTGCGGCATGTCGAGCAGTCGCTCGATCTGGAAGGCACGCCGATGTTCGTCATCGCGCGCAATCCCG CAAGCGCCGTTGCCGCACCGAGCGGCGGCGATTCGAGCGATCTCGATACGCTCGCACGCAGCGAGCAATGGCTCGTGCTG CACGCACCGGATGTCGTCGGCGGTTTCGGGGCGCGGCTGGCCGACGCGCTGGCGCATGCGGGCTATCCGGCCGATATCGT GGAGATCACGCATGCGGCCGATGCGATTGCGTCGTTGCCGGCCGGGCAGCCGGCGCATGTCGTGTTCTGCGCGCCGGAAA CGCCGCTCGCCGAGGCGGCGACGGGCGACGACCTGATGGCCGCGCAACGCAATGGCGTGATCGCGCTGGCGGCATTGGTT CGCGTGCTCGGCGCGCAGCCGAACGCAACCACGCGGCTGACCATCGTCACGCGCGGCGGCGCGCCGTTTGCCGGGACCGC GCATGCGCATCCGGAGCAGGCGACGCTCTGGGGCCTCGGCCGCGTGCTGGCGAACGAGCATCCCGAACTCGCGTGCCGCC TGATCGATATCGACTGCGCGGCGGATCGGATTCCCGAGGCGCTGATTCGCGAGCTGACCGGTGCGGCGCTCGAGGAAGAA GTCGTTCTCGGCGCGCACGGGCGGCGGGTGCCGCGCATGCTCACGGCCGCGCAGGACGCCGCGCGCAACGATGGCGCGAT CGCGCGCGCAGCCGTGCTCGCGTTCGACGCGCCGGGTTCGTTGCGCAATCTCGAATGGTTCGCGTTGGCCGAAAGCGCGC TGGGCGCGGACGAGGTGGAAATCGAGCCCGTTGCAACGGGCCTGAATTTTCGCGACGTGATGTATGCGATGGGGCTGTTG TCCGACGAGGCGGTCGAGACCGGCTTCGCGGGCGCGACGATCGGCATGGAGCTGTCCGGCCGCGTCGTGCGGGTGGGCAG CGCCGTGACGGAATTCGCGCCGGGCGACGCGATTCTCGGGTTCGCGCCGGCCTCGTTCGCGACGCGTGTCAGGACGCGCG CGCAGGCGATCGCGCCGAAACCCGAGCGCCTGTCGTTCGAGGAGGCGGCGACCGTGCCGACCACGTTCTTCACCGCGTAT TACGCGCTCGTCGAACTCGCGCGGCTGCGCCGCGGCGAGCGCGTGCTCGTACATGGCGGCGCGGGCGGCGTCGGGATCGC GGCGATCCAGCTCGCGCGCTACTTCGGCGCGGAAGTGTTCGCGACGGCCGGCAGTGACGAGAAGCGCGAGTTCGTGCGCC TGCTCGGTGCCGACCACGTGCTCGATTCGCGCAGCCTGGCGTTCGCGGACGAGATTCGCGCGATGACGGGCGGCGAGGGC ATCGACATCGTGCTGAATTCGCTCGCCGGCGAGGCGATGGTGCGCAGCATCGACACGTTGCGCCCGTTCGGCCGTTTCCT CGAGCTCGGCAAGCGCGATTTCTACGAAAACAGCCATATCGGGCTGCGGCCGTTTCGCAACAACATCAGTTACTTCGGCA TCGATGCCGACCAGTTGATGGGCGCGCTGCCCGAGCTGACCGCGCGCCTGTTCGGCGACGTGATGGGGCTGTTCGCGGCG GGCGTGCTGCATCCGCTGCCGTATCGCGCGTTTCCCGCCGAACGGGCCGAGGACGCGTTCCGCTACATGCAGCAGGCGCG CCAGATCGGCAAGGTGCTCGTGACCTATCCGTGCGGCACGCCGGCGCCGACGCACGGAGCCGCGCGCGCCGATTCGCTCG CGCTCGATCCGCATGGCGCGTACCTGGTGGTCGGCGGCACGGGCGGGCTCGGTTTCGCGAGCGCGCGCTGGATGGTCGAG CGCGGCGCACGCCGATTGACGCTGGCGAGCCGTTCCGGCGAACTCGCCGTCGCGGCGCGCGACGAAATCGAGTGCTGGCG AGCCACGCTCGGCGTCGCGGTCGACATCGTGTCGTGCGATGTGACCGACGCGGCGGCGGTCGATGCGATGATTGCCGCGA TCGTCCGGCGCGATATCCCGCTCAAGGGCGTGCTGCATTCCGCGATGACGATCGACGACGGCCTCGTGCGCAATCTCGAC GATGCACGCATGGCCGCTGTGCTCGCCCCGAAGGTGGCGGGCGCGTGGAACCTGCATCGCGCGACGCGTTCGCTGCCGCT CGACCTGTTCGTGGTCTATTCGTCGGCGACGACCTATCTCGGCAATCCGGGGCAATCGAACTACGTCGCGGCCAACAGCT TCCTCGAGGCGCTCGTCGAGCATCGCCGCGCGGCGGGATTGCCCGGTACGTTCATGGCATGGGGGCCGCTCGAGGACGTC GGCTTCCTCGCGCGCCATGCCGATACGCGCGAGGCGCTGCAGTCGCGCATCGGCGGCGCCTCGATCACGTCCGGCGAGGC GATGATCGCGCTCGAGCGCGCGCTGGTCGCGGGCGCGGCCGGCGAAGCGGTGGTCCGGCTCGACTGGCACGCCGTCGCGC GCGGCATGCCGGCCGCGAAGGCGCGCCGGTATTCGCTGCTGCAATCGCATGCGAACGGCGGCGATGCGCGCGACGGTGGC ACGCAGTTGCGCGAAGAGGTGCTCGCGCTGCCCCGCGATGAAGCGATCGCGCTGGTTGCCGGGACGCTGCAGGCGCAGAT CGCACGGATTCTGCACATGACGCCCGATCGCATCGCGCTCGACAAATCGGTGCTCGACATGGGCATGGATTCGCTGATGG GGATGGAGCTTGGTCTCGCGGTCGAGGAGGCGTTCGAGGTCAAGCTGTCGGTGATGGCGATTGCCGAGGGCGCATCCGCG ATGACGCTGGCCGGGCGCATCGTCGATTCGATCGGCGCATCGGCGGATGCCGGCGCCGGCGCCGCCGCCGACTCCGCGCA CGAGGCCGTCGCTGCGCTCGCCGCGAAGCACGCGATCGACGGCGACGCGCGCGCGGTGCTCGATATCCGGCCGGCGCCCG TGGCAGGCCAGGTGTCGCCGACGCTGGAGGTCGCGCGATGA
Upstream 100 bases:
>100_bases ACCGCGCGGTCGAGGAACTTGGCACCGCGTTGCTTCGCGCGATGAAGACGACGGGTAGGCAGGCGGTTTCGACTGGCGCG TCGGAGATAACAACGTAGCT
Downstream 100 bases:
>100_bases GCGTGCCGACCGGCTGGGCGACGAGTCAGGGTACGCTGGCACGCGCGCTGACGATCGACGGTCACGGGCTGCACACGGGG CGCCGGGTGGGGGTGCGGAT
Product: type I polyketide synthase WcbR
Products: NA
Alternate protein names: NA
Number of amino acids: NA
Protein sequence:
>2546_residues MVNTKIAIIGASCRFPGGVAGLEEYWQLLKSERDAVTEIPPERFGTDFYRHPSKREPGKSYTFSAGVLDNVAGFDAAFFG ISPREATQMDPQQRLLLELAWEAFEDAGVRPADMRGSNCGVYVGVAGTDYGNRSMDDLNAIDPYSATGNTLSIASNRVSY LFDLRGPSMSVDTACSSSLVALHQAVQALQSGEAETALAGGVNLLLHPFGFVSFSKASMLSPRGRCRAFDATGDGYVRAE GGAFVLLKPLDRAIADGDTIHAVIAGSGVNSVGHSPGGISVPGAAAQAALLRSVYARAGVDPQSLAYLEAHGTGTAVGDP IEARALIDVVSGARPADRPLLIGSVKTNIGHLETASGMAGLLKAVLCLKHRAVPRSLHFSIPNPAIDFDGGRLRVVDRYM PLEAGNAPLTVGVNSFGFGGTNAHIVLTEAPVSAAVADDVPTSATQAARAPSALVLTARSPNALGALANRYLAALENGGD WQALAAAAARRRQWLEHRAIVAPADAAEGRAALAALARPAPEGGPSCVTTGRAPADAPRTALVFSGNGCQWVGMGNALYA EDAVFRAALDEVDALWCADGSPSLVDVMRGGPGAQWLAGAGAEWLAATENAQPLLFAIQVGMIRVIDARGMRYDAAIGHS VGEVAAAWVTGALSLTDAVRVIKIRSRAQAMTRGCGRMAAVGIGDAAARELIARHGLARRVEIAGVNSPDAVTLAGEPQG LQVLEAALRGSGKFFQMLDLDYAFHSSHMDRIEPVVLAGLAGLRPQPGNGAFVSTVTGGALAGSELDARYWWRNIREPVR FGDGIAHLIEQGVRLFVEVSPHSILRTYVKQALAAAGVTGVALPTLKRDHGSAATLRQAILAAIAHGASVDPDRFAPGAS RAALPSYPWQRERFWLTPTVEGYGLVNRRREHPLLGYRLHEHAFAWENQLDPAKLPMLADHVVDGGVAFPGAGYVEMALA AACTFFDTPDAALENVEIRMPVVFQPQQAKLFRLVIEPRTATFTIETRDRMSDGAWTLNVTGRMLESGNALGTASVVPSD MLERLLALPAADGDMLYANTAAIGLGYGPAFRWVRTVRLAEGDDAALADVAAPDACGDARTLSAYRLHPALMDSGFHPLF ALLAAHARDGEHPAYVPVQIGRVDYLRGDTVARVLARIDRRSPHSIVAHFEFLDAQGAIVARLGACRFRRVDLVGRRQNL PARFVYRLEAMPLPGDVDAAGLPAPDALLARAVARLDAGHDGRRTRHLTEILPLLDVLASLYVLQAFDALGAFAGTWRPA HGCAALAARLADMLVEDGLAHRDGDRLVRDDAACAALPPLDELWRGLLAESPAHVAELTLLAHCGSALPGVLSGAKDGTR LLSPTGHSLVEHLLAASPTWQHVYALLTASVEQAVDAWQPARRLRVLELGATDGDVLQTLGMHLAPARCDHTIAATAGQL AGFGADAQAAVTTVALQPGERLSLAADEAGPYDVIVANRALSGRRDVADALNAMRSWLAPGGLLLLAESRRGRFSDIVFG MQAPSTQTDAPAPLAPADLEAALAHAGYVGVVRHVEQSLDLEGTPMFVIARNPASAVAAPSGGDSSDLDTLARSEQWLVL HAPDVVGGFGARLADALAHAGYPADIVEITHAADAIASLPAGQPAHVVFCAPETPLAEAATGDDLMAAQRNGVIALAALV RVLGAQPNATTRLTIVTRGGAPFAGTAHAHPEQATLWGLGRVLANEHPELACRLIDIDCAADRIPEALIRELTGAALEEE VVLGAHGRRVPRMLTAAQDAARNDGAIARAAVLAFDAPGSLRNLEWFALAESALGADEVEIEPVATGLNFRDVMYAMGLL SDEAVETGFAGATIGMELSGRVVRVGSAVTEFAPGDAILGFAPASFATRVRTRAQAIAPKPERLSFEEAATVPTTFFTAY YALVELARLRRGERVLVHGGAGGVGIAAIQLARYFGAEVFATAGSDEKREFVRLLGADHVLDSRSLAFADEIRAMTGGEG IDIVLNSLAGEAMVRSIDTLRPFGRFLELGKRDFYENSHIGLRPFRNNISYFGIDADQLMGALPELTARLFGDVMGLFAA GVLHPLPYRAFPAERAEDAFRYMQQARQIGKVLVTYPCGTPAPTHGAARADSLALDPHGAYLVVGGTGGLGFASARWMVE RGARRLTLASRSGELAVAARDEIECWRATLGVAVDIVSCDVTDAAAVDAMIAAIVRRDIPLKGVLHSAMTIDDGLVRNLD DARMAAVLAPKVAGAWNLHRATRSLPLDLFVVYSSATTYLGNPGQSNYVAANSFLEALVEHRRAAGLPGTFMAWGPLEDV GFLARHADTREALQSRIGGASITSGEAMIALERALVAGAAGEAVVRLDWHAVARGMPAAKARRYSLLQSHANGGDARDGG TQLREEVLALPRDEAIALVAGTLQAQIARILHMTPDRIALDKSVLDMGMDSLMGMELGLAVEEAFEVKLSVMAIAEGASA MTLAGRIVDSIGASADAGAGAAADSAHEAVAALAAKHAIDGDARAVLDIRPAPVAGQVSPTLEVAR
Sequences:
NA
Specific function: NA
COG id: COG3321
COG function: function code Q; Polyketide synthase modules and related proteins
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