Definition Burkholderia vietnamiensis G4 chromosome chromosome 1, complete sequence.
Accession NC_009256
Length 3,652,814

Click here to switch to the map view.

The map label for this gene is Not Available

Identifier: 134294814

GI number:

Start: 774205

End: 778416

Strand: Reverse

Name: Not Available

Synonym: Bcep1808_0702

Alternate gene names: NA

Gene position: NA

Preceding gene: 134294816

Following gene: 134294813

Centisome position: NA

GC content: NA

Gene sequence:

>4212_bases
ATGTCCGACCGTCAGGAATCCGCCGTAGCTGCGCCCGAAGCGGGACCTCCGAAGCACGATCATCCGGTCCTGCGCCGCGT
GTTCAGGGTGACGCTGGCAGTCGGCATCGGCGTGTACTTCGTCGCGTCCGGCGCATTCCTCGGGCTGCGCTACGTGGTGC
TGCCGCGCATCGACGAATTCCGGCCGCGCATCGAGCGCGCCGTGTCCGACAAGCTCCACGCGCAGCTTTCGATCGGCAGG
CTGTCCCCGCACTGGTCGGGCATGCAGCCGGGCGTCGAAGTGACGAACCTCACCATTCGCGGCCGTGACGGCCGCATCGC
GCTGTCGGTGCCGCATGCGACGGCCGCGCTGTCGTGGATCTCGCTGCTGCGGCTGTCGCCTGCGCTGTCCAGCCTGATCG
TCGACCATCCGGATCTCGTCGTCGCGCGCGCGGCCGACGGTTCGCTGAGCGTCGCGGGCATCGGCGTCGCGACCACCCAC
GGCGGCAACGACACGTTCGGCACCTGGCTGCTGAAGCAGGAAGCGATCGTGCTGCGCAACGGCACGCTGCGCTGGCGCGA
CGCCCAGCACGACGCACCGGAGCTCGCGCTGTCGGGCATCCGCCTCGCCGTGCTGAACCACGGCCGCGAGCACAAGGTCG
CGCTGCAGGCGCCGGCCAACGGCACGCTGCTGCTCGGCCCGCTCGACTTCCGCGCGCGCTTCACGCACAAGCCGCTCGCG
CCGATCGGCAAGCCGACCAACTGGACCGGCAACGCTTACTTGTCCACCGGCCCGGTCGACCTGCAGACGCTCGGCCGCTA
CCTCGACCTGCCGTTCACGGCCCACGCGGGCCGGATCGACAACGCGATCTGGGCGACCTTTCAGGACGGCCACCTGCGCT
CCGCGGGCGGCGACCTGCAGGGCGCCGACGTCGTGCTGCGCGTGCGGCCGACCCAGCCGCGCCTGGAAGTGCCGACGGTC
GGATTCGGCTGGGACATCGCGCTCGACGCCGGCCGCGACTACACGCTGCACCTGACGCGCTTCAACGCCGAGCTCGGCCA
GCCGCCGCTGCCCGACGGCACGCCGCTCGCGCGCTCGCTCGCGCTGTCGACGCTGACCGCCCGCTACCGCGTGCCGACCG
CCGATCAGGGGCAGTTGCTGAGCGTCGCCGGCGACCGCGTCGATCTCGGCATCCTCAGCGAATTCATCCGCGGGCTCCCG
CTGCCGGCGCGGCTGCGCAACGAGCTGATCAAGCTCGACCCGCACGGCATGGTGTCGAACTATCACATCGAGGTCGAACG
CGCGAAGCCCGCGCGGGCCGAGCTCGCCGACGAGGAACGCCGCACCGGCGCCGCGCCGATCGTCCGCTACCGCTTCCTCG
GCGATCTGCAAGGCATCAGCTTCGCCGCGCAGGAGCCGCCGCCCGGGCTGTCGCCGCGCGGCCATCCGCGCGCCGGCTGG
CCGGGCGTCGAGAACCTGTGGGGCAGCGTCGACGCGACCGAGACGGGCGGCGCCGCGCACTTCGACACGGTGAACGCGGC
GGTCACGGTGCCCGGCGAGTTCGACGAACCGCGCCTGACCTTCGACCGGCTGCGCGGCAACGCCAAATGGGTGATCACGC
CGGCGCCGGGCGAGAAACACGCGCGCGTCGACGTGACGTTGCCCGACCTGTACGTCGCGAATCCCGATGCCGAGATCGAC
GTATCGGGCACGTACACGAACCCCGGCCACGGCCGCGGCTCGCTCGACCTGCGCGCCGAGTTCGCCCGCGCGGCGGTGGC
GCGCATCCCGCGCTACCTGCCGACCGGCATGTCGGAGCGGCTGCGCGCGTATCTCGGGCATGCGCTGCAGGACGGCCGCG
TGACCAAGGGCGCGTCGATCGTCGCGCGCGGCCCACTCGAAAAATTCCCGTTCGAACACGAGCCCGATGCCGGCGTGTTC
CACATCGTCGCGCCGTTCACCGGCGGGCGCTTCGAGCCGACGCCCTACCCGCCGCGCAAGCTCGCGAACGGCACGCCGAG
CGTGTGGCCGGCGCTCGACGGGATCGACGGCGTGTTCGAGCTCGCGCAGAACAAGCTGCGCTTCGACATCGCACGCGCGC
GCTACAAGCGCGTCGCGCTGACGAACGTCAACGGCCGGATCGACGACCTCGGCAATCCGTCGAAGTCGCCGCTCGTGATC
GACGGCCACGCGCACGGGCCGCTCGCCGACCTGATCGACTACGCGGACAACAGCTCGCTCGGCACGATGAGCGGCCACAT
CGGCCAGCGCATCGACGCGCAGGGCCCGGCGTCGCTCGCGCTGAAGATCACGATTCCGCAGCACGTGCCGCATCCGCACA
CGCACGTCGAAGGCGCGCTCGCGTTCGGCGGCAACACGCTGTCGACCGACGGCGTGCCGCCGCTGTCCGCGCTGCGCGGC
AGCGTGCGTTTCACGGAGGCCGGCGCGTCGCTGCACGACCTGGCCGGGCGCTTCCTCGGCGGGCCGGTGCACGCGAACGG
CAGCTTCCAGTCGCACGGCCCGTACACGGTCGACGTCGACGGCAAGCTCGCGCTCGACGCCGCCCGCGGGCTGAACCTGC
GCGGCACGGCCGCGGCGCTGCTCGAACACGTGGTCGGCGACGCGCCGTACCAGGTCGCCGTGCGCGGCGCGCCGGGCAGC
CTGCCGCAGATCACCGCGCGCTCCGACCTGACGGGCGTCGCGCTGAACTTCCCGGCGCCGTTCGCGAAACCGGCCGGCGA
GCCGATGCCGTTTCGCTTCACGCTGCAGCCGGCCACGCCGGCCGGCGGCAAGCGCATCGAGCACGCGGACCTGACGCTCG
GCCCGGTGTCGGCCACCTATCTGCTCGACGCGACGCGCGGCCAGCCGCTGCGCGCATTGCGCGGCGCGATGGGCATCCAC
CGGATGCCCGACCTGCCGCAGGACGGCGTGAGCGCGGCGGTCGACGTCGACGAGCTGGATGCCGACGCGTGGCTCGCGCT
CGCGCACACGCTGAAGCCCGACACGCCGCGCACGCCGGAGCCGCCGCCGGAGGCGCCGGCGCGGTCGCGCATCGACGTCG
CCAGCTTCACGCCGAAACGTTTCGCGCTGCACTTCGGCACGCTGAAGCTGCTCAAGCGCAACTGGGAAAACGTGATCGTC
GGCGCGTCGCACGTCGACGAGCTGTGGCAGGCGAACATCGCGTCGAACCAGGTCTCGGGCTACCTGTCGTGGGCACCGGG
CGGCGGGCACAACGGCGCGGGCGTGCTCAATGCACGGCTCGCGAAGCTGGTGATTCCGGACAGCGCCGAGCACGACCTCG
TCGGCCGCGCGATGAACCTGCCGACGCCGACCGACCGGCCGATACCGTCGGTGGACCTGATCGTCGACCAGGTCGTCGCG
CGCAATCACGACATCGGCCGGCTGGTCGTCAACGCGCGCAACATCGACGAGGACGGCGTACCGGTGTGGCAGCTCGATCG
GCTCGAGCTCGCCAATCCGGCCGCGAAGCTGACGGCGACCGGCAACTGGCGCACGTCGCGCCGCGCGCTGGCCCGCGGCG
TGGACGACAACGACGCGCCGCGGCGCAGCGTGTTCGACTTCAAGCTCGACGTCGGCAACGCGGGCGCGCTGCTCGACCTC
GTCGGCCTGCCGCGCACGCTCGAGAACGGCCACGGCACGGTGACCGGCAAGGTGGGCTGGCGCGGCGGCCCGACGGCCGT
CGAGGTGCCGTCGCTCGGCGGCCAGGTCGCGCTCGACTTCGAGCACGGCCAGATCCTGAAGGTCGATCCGGGCGCCGCGA
AACTGCTCGGCGTGCTGAGCCTGCAGAGCCTCGCGCGGTTCCTGACGCTGAACTTCCGCGACGTGATCGGCAAGGGGCTG
CCGTTCGACAAGATCACCGGCACCAGCCGGATCTCGAACGGGATCGCCCGCACCGACGACTTCTCGATGACGACGGCGCC
CGCGAACGTGACCGTGCGCGGCGCGGTCGATCTGGCCACCGAGACGCAGGACCTGCACGCGCACGTCGCGCCGAAGATCG
GCGCCGGCACCGCGGCGATCGCGGCCGCGATCGTCAATCCGCTGCTCGGCGTCGGCGTGCTGGCGGCGAACTACGCGCTG
TCGCAGACGCTGTCGCACGCGTTCGCGCTCGACTACGCGATCACCGGCTCGTGGGCGCATCCGCACATCGAGCGGGTGCG
GGGCGATCAGGGTAAGATGGATCACGGTCCGGCCGATGCGGCAAGCCACTGA

Upstream 100 bases:

>100_bases
AAAGCCCGTGCCGCATGCGCGCAACGGCCGCCGGCACGAACCCCTGTGATACATTTCAACGTCAATCTGCAAAACTACCA
TATCGCCGCCCCTCCGCCGC

Downstream 100 bases:

>100_bases
CGCGTGCAGGCCGCCGGACCGCACCCCTTTTACGAAGCCAGCGATCCTGCGATGACCGATCCGACCCGTTCCGCCACGCC
CTTCCGGGTTGCCGCGCTGC

Product: hypothetical protein

Products: NA

Alternate protein names: NA

Number of amino acids: NA

Protein sequence:

>1403_residues
MSDRQESAVAAPEAGPPKHDHPVLRRVFRVTLAVGIGVYFVASGAFLGLRYVVLPRIDEFRPRIERAVSDKLHAQLSIGR
LSPHWSGMQPGVEVTNLTIRGRDGRIALSVPHATAALSWISLLRLSPALSSLIVDHPDLVVARAADGSLSVAGIGVATTH
GGNDTFGTWLLKQEAIVLRNGTLRWRDAQHDAPELALSGIRLAVLNHGREHKVALQAPANGTLLLGPLDFRARFTHKPLA
PIGKPTNWTGNAYLSTGPVDLQTLGRYLDLPFTAHAGRIDNAIWATFQDGHLRSAGGDLQGADVVLRVRPTQPRLEVPTV
GFGWDIALDAGRDYTLHLTRFNAELGQPPLPDGTPLARSLALSTLTARYRVPTADQGQLLSVAGDRVDLGILSEFIRGLP
LPARLRNELIKLDPHGMVSNYHIEVERAKPARAELADEERRTGAAPIVRYRFLGDLQGISFAAQEPPPGLSPRGHPRAGW
PGVENLWGSVDATETGGAAHFDTVNAAVTVPGEFDEPRLTFDRLRGNAKWVITPAPGEKHARVDVTLPDLYVANPDAEID
VSGTYTNPGHGRGSLDLRAEFARAAVARIPRYLPTGMSERLRAYLGHALQDGRVTKGASIVARGPLEKFPFEHEPDAGVF
HIVAPFTGGRFEPTPYPPRKLANGTPSVWPALDGIDGVFELAQNKLRFDIARARYKRVALTNVNGRIDDLGNPSKSPLVI
DGHAHGPLADLIDYADNSSLGTMSGHIGQRIDAQGPASLALKITIPQHVPHPHTHVEGALAFGGNTLSTDGVPPLSALRG
SVRFTEAGASLHDLAGRFLGGPVHANGSFQSHGPYTVDVDGKLALDAARGLNLRGTAAALLEHVVGDAPYQVAVRGAPGS
LPQITARSDLTGVALNFPAPFAKPAGEPMPFRFTLQPATPAGGKRIEHADLTLGPVSATYLLDATRGQPLRALRGAMGIH
RMPDLPQDGVSAAVDVDELDADAWLALAHTLKPDTPRTPEPPPEAPARSRIDVASFTPKRFALHFGTLKLLKRNWENVIV
GASHVDELWQANIASNQVSGYLSWAPGGGHNGAGVLNARLAKLVIPDSAEHDLVGRAMNLPTPTDRPIPSVDLIVDQVVA
RNHDIGRLVVNARNIDEDGVPVWQLDRLELANPAAKLTATGNWRTSRRALARGVDDNDAPRRSVFDFKLDVGNAGALLDL
VGLPRTLENGHGTVTGKVGWRGGPTAVEVPSLGGQVALDFEHGQILKVDPGAAKLLGVLSLQSLARFLTLNFRDVIGKGL
PFDKITGTSRISNGIARTDDFSMTTAPANVTVRGAVDLATETQDLHAHVAPKIGAGTAAIAAAIVNPLLGVGVLAANYAL
SQTLSHAFALDYAITGSWAHPHIERVRGDQGKMDHGPADAASH

Sequences:
NA

Specific function: NA

COG id: COG3164

COG function: function code S; Predicted membrane protein

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