Definition Vibrio harveyi ATCC BAA-1116 chromosome I, complete genome.
Accession NC_009783
Length 3,765,351

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Identifier: 156975340

GI number:

Start: 3091926

End: 3096311

Strand: Direct

Name: Not Available

Synonym: VIBHAR_03070

Alternate gene names: NA

Gene position: NA

Preceding gene: 156975339

Following gene: 156975341

Centisome position: NA

GC content: NA

Gene sequence:

>4386_bases
ATGGCATCAACCATCGGCGCTAATGGGCTGAGTATTGTACATAAAGGCTCAGGCGGTGAAGCGAACGCTTCTGTGCCGGA
CGTTTGTTTAACCAAAGTCGGAAAGCCTGTTGTTCCTATTCCGTACGGCAATAACGCTAAATCCGCCGATTTGGTGGACG
GCTCAACCAGTGTCACTGCCGATGGTGGCAACAGTATTGCCTTGCAAGGCAGTAAGTTCTCAAAAAGTACAGGTGATGCC
GCTGGCGATAAAAAAGGCGTGAGTTCAGGAACCATTGAAGGAGAAGCGCAGTTTGTGACGTCTTCTCCGAATGTCCTTAT
CGAAGGAAAAGGAGTGGCACGCCAAAGTGATCAAATGACCATGAACAATGGCAACACCATGTGTTTTGGCGTACAGAACC
CATCTTTCTCGGTCGAAGAAGATCTTGAAGAGACCTTTATCATGGACGTTTGCGTGCGTCACCCAAACGGTCAACGGCTG
GTGAATGCGCCATTTAAACTCAGTGATGAGCAAGGTTCGACGGTATATGAAGCCACTTTGGATGATAAAGGGCGCAGTGA
TGCCGACCCGCTCAAAGGTGGCAAGGTCAAACTGCTGGTCGAAGAGAGTCAAGACCCGTTTGTGGTGGCTCCGATTCGTC
GCGATAACCCTCGCCATCTAGACAGCCAATCGGATGATGATTTTTTCAATATCGCTTCCAAAGGTCAGCGCGGCTTTTGG
CAGCCAACCAGAATTGAGACCGTTGGCACGGCTTGGGGCAGTATTGGGCAAACGTTGAGTAGCGATCGTTATTTCCAAGA
CATGGTCAGTGCTGAGGTCATTCAGCACTTTACCCATTATCACCCTGATACAACATTCGATGTATCAAAGACCTGTGAGG
CTCTTATTGGCAACCTTGATCAACCCTTGCCGCATACCACTGAATCGCTGCTCGCTTACACCCTGCCTCAAGTTCTAGAA
GAAGGAGAACTACTGTCGGTACTGCTGAGGCTAGCCCCGCATGAGACCACCGACCGAATGCTGGCGTACATGCGTGCGCG
AGGTAAAGGCAACCCACAAACCTATTTGGCTGACTACGATTGGCAAGCGGCAGAAAAGAGCATCAATAGTGAACTCGACG
CGCTGCTTAACAAGCTGAAAAGTCGGTTAACCTTCTTACGTGATGAAGCCAGCAAACTGCAATACGCGTACCTGTCTGAG
GATGTGTTCGATAAGCACATCGATACGTTAAGCTCGTACATGAAGCTACTACCCGACCTCATTTCAGGTGTCTTCAGTAA
AATGCAAACCAAAGCCAGCGAGCTTCTGGCGAACACAGATGACGTAAAGGTCATCAAAGCGGCAGACGACTTACACTCGA
TTGAGAGTGAATCGATTGAAGCCGTTGTCAACACCACGAAAACCATCGACACGGTCGAGCCATTTATGAACGAAGTGGCT
GGTGTGATTGAGAATGTCATTCCGATTTATCCGGTGCGTTATGGCTACGCGAATTTCTTTGACGAATTGATGCCAGCGCA
AGCCCCGCCAAGCATGTTAGAAATGAATGGTGCTACCGGGCTGAAAGACACCGGTGGCTACCTGCTTCGCCTTCTACGTG
AGGGTTGGTTGTACATCAAAGAAGAGAGCGAAGAAGAGACCGCGCCTTTCCACATCTTCAAATACGCGCAAACCCAAACG
CCGACCGGTGTGATTGAAAAGTTTGAGAAATACTATTTCACCAATGAAGAAAACGCTCAAGAGGGATTAACACTCGATAC
CTCATCGGGTTCCACGTTCTATCCTTTTGCGTTTGTGACGCCGAAAGCGAAAAAAATCTCCATCGCTTACTCTGAGCACG
AATGGTCTGCCGCCATCATTGATAACATGAACGGCGATGAAGAGTTGCGTAAAAAAGCGATGCAGCAGGTGGACTTGAGT
ACGCCGCAAACCGAGTTTAGCCAAGCGGCAACGCAAGACAACCTCAGCACCTTGGTGGAAGATTACCGCAATAACGATGA
AAAGTGGTTGGCAGACAAAGACAGCGCGAAACCTATGGCACACGGGCTTGATCTCGCCACTACCACACTAAGTTATCACC
TTACGACTGAAGGCATTGTAGAAACCATGCAAAAAAGCCATAGCGAGCATAAAGACGGCACATTGGTGGCTTTGTTTGAC
CCAGTTGGTCGTCAACGTGATATCTCAAAAGTTATCTCGAAAAATGTCGCTGAGCAACAAGCCTATGTCAATGTCAACAA
ATACCCTTTGACGATTGGTCAGTACGCACAGTCATGTCTTGAGAGTGATATTCCAGAAATCAAGAAAGCTGCGGAGGAAA
ACCTTGATACGGAAAGGCTCTCAATATTTTTGACAGATTATCAAGATGAAATCAGCAAGAAAAAGAAAGAACGCAAGCAG
TTACTTGAATTGATGGACTACTTTGTTGCGGGTCAAGGCGCTGAAGATGAGGTTGGCTCGCTTACTTGCTATCTAAGACA
CTACTTTGATATTCGTCAGCAAGGCATTATCGACCCTGCTGCTGAGATGGGGAAATTGCTGCTCCTTCTTGGATCGCTTT
TTGAAGGCGTAACCGCAAGCGAAGAAGGCATTGAAGACATGGATAGATGGGTTGGTGAAGCCTTTCATACAGAAGAACTC
ACCCCATTAGATAAGGTGTGGGGAGTTTCTTTAAAGGCCATTCAGATCGTATTTCTTCAGCCTCAAGATCAAATAAATTG
GCATCATGCTGTTCCTCCTGTATTAACTTCGATAGGTAATTACTTGGCTCGTATACAAGCTGAGTTCACTTATGGCACTA
AGTTACTGGGAAATTCTGGGTTAGAGTGCTTTTATAGAGCAACCTTACCATCATTATTTGATGCCTTATTAGGGGTTCGG
TTTACGGGGAATCGACTCAACATGGCGCTCGATGACATCGAAAACTTAATCGATAAACAAACAGGTCAAAAAAGCTCAAT
CAAATCAAACGTGCACTTTGGCGAAAAGCTGCTCAATTGGTCTGAAATGAAAGCAAACCAATCAGAGCAACGTATTTTTG
AATTACTGGAAGCAGAGCCAACAGCATCAGCGCCTGAATGGCTCAAAAGGCTGGCCGATAAGCTCCCTACCAAAACACTT
CTCCATTTCGCACAAGAAAGTGCAGGTTTAGGGCTGACCTATTGGTCGTATCAAGCAAATGTGAATACCATCAATGATCT
TTTGTCTCAAACACAATTCGATACACTCGACCCCGTGAATGATGACAAAGAATATACATATCGCACGGTAAAAATGTTGT
CCACGCTCGCGGCGATCACCGCAGACAGTATTACTCTCAGCCAGTACAGTGCCAAGGGAGTAAATATTGCAGCACGTGAA
GCTGAAAGGGCGCTTCTTGCCCTTCAAAAGCAGTTACCGAATATGAGTAAGCAGTTAGCTGAAAAGCTCGGAGTGCGCAG
TTTACAAGCTTACAGTCAGCGTCTAGATACGCGCCTGACAGCAGCGCCGATAAAAGGACTTGTTGTCGGTGCAAACGTGG
CAATGTCATTTGTTTACTTCTGGGATGCCTTTACTAGTCGCAGGTCAGGCAATAAACAAGCTTATCTGGGCTATCGGATC
GGTGGCGTCTCCAGTCTATTGGTTGCACTTTCGGCCATCGGGGGGCCGGTTGGAGCCGTATTACTCGCCGTTGGTCTTAC
GGGGCTTTTATTTAGTGCATATCAGATTGGCCGATATGGAAAAAATAGTTTCGAAAACTTGCTCTACAGCTCTTTCTGGG
GGACCAGTAAGTATTATCCGTTTTGGAGTGATTTTAAAAAACAAGAAGACATTGATACTGTTCAAGAGAGGATAGATGTT
ATCACCGATGTGGTATCTAATAACAACAAGGCTGTGACATCTGATAACATTAAGTACTTTGATGCGGCATTGAACATCGA
GTCTCAGGAGTTTTTAAACTATTTTTACGCACCAAAACTCACTATTGTGGACAGCAGTATTCGTCCATATGGCTCAGAGC
CATATCGATACAATCTCAGTTACGTATTCGTCTTGCCGGATTTTAAAATGAACGTATCTCAACTGCATGGTTCGATTTAT
CGTGAATTGGATGACGCTAAATACGCGGCTTACTCAGTACCTGAGCCCGATAAGGCCATGACCGAAACCTTCAGGAGTGC
GTTGGCGGCGGCATTTGAAGATAGGACGTTATGTATCGCCAAAGAAGACGGTCTGCATGTCACGGTCAATGTCGAGTTTT
CGCACCCAGCTCGCCTGATCTGGTGTTACGAACCGACACCAAACACTGTTGTACCAAAACGCTATTTAACCAACAGCGGC
TACATAAGCACGAGTCAAATAGGCATGCTTGATGAAAAACCAAACACTACACCTTGGGGAAAATAA

Upstream 100 bases:

>100_bases
CGGTTAAAACCGCCGCCCAAAACATCAATACATCGGCAGATAAGCTACAAAAAATTCAAGCGACCAAAGTGCGCTTAAAC
TGATTGAAAAGGAAAAAATT

Downstream 100 bases:

>100_bases
TGAATCGCGGCTCTAGAGGAATATTCACAACAAAAGCGCAACCTTTTTCAAAGTGGTGGGCGCAATTTCGAGCAGAAGTG
ATCGTTGTTCCGATGGAAGA

Product: hypothetical protein

Products: NA

Alternate protein names: NA

Number of amino acids: NA

Protein sequence:

>1461_residues
MASTIGANGLSIVHKGSGGEANASVPDVCLTKVGKPVVPIPYGNNAKSADLVDGSTSVTADGGNSIALQGSKFSKSTGDA
AGDKKGVSSGTIEGEAQFVTSSPNVLIEGKGVARQSDQMTMNNGNTMCFGVQNPSFSVEEDLEETFIMDVCVRHPNGQRL
VNAPFKLSDEQGSTVYEATLDDKGRSDADPLKGGKVKLLVEESQDPFVVAPIRRDNPRHLDSQSDDDFFNIASKGQRGFW
QPTRIETVGTAWGSIGQTLSSDRYFQDMVSAEVIQHFTHYHPDTTFDVSKTCEALIGNLDQPLPHTTESLLAYTLPQVLE
EGELLSVLLRLAPHETTDRMLAYMRARGKGNPQTYLADYDWQAAEKSINSELDALLNKLKSRLTFLRDEASKLQYAYLSE
DVFDKHIDTLSSYMKLLPDLISGVFSKMQTKASELLANTDDVKVIKAADDLHSIESESIEAVVNTTKTIDTVEPFMNEVA
GVIENVIPIYPVRYGYANFFDELMPAQAPPSMLEMNGATGLKDTGGYLLRLLREGWLYIKEESEEETAPFHIFKYAQTQT
PTGVIEKFEKYYFTNEENAQEGLTLDTSSGSTFYPFAFVTPKAKKISIAYSEHEWSAAIIDNMNGDEELRKKAMQQVDLS
TPQTEFSQAATQDNLSTLVEDYRNNDEKWLADKDSAKPMAHGLDLATTTLSYHLTTEGIVETMQKSHSEHKDGTLVALFD
PVGRQRDISKVISKNVAEQQAYVNVNKYPLTIGQYAQSCLESDIPEIKKAAEENLDTERLSIFLTDYQDEISKKKKERKQ
LLELMDYFVAGQGAEDEVGSLTCYLRHYFDIRQQGIIDPAAEMGKLLLLLGSLFEGVTASEEGIEDMDRWVGEAFHTEEL
TPLDKVWGVSLKAIQIVFLQPQDQINWHHAVPPVLTSIGNYLARIQAEFTYGTKLLGNSGLECFYRATLPSLFDALLGVR
FTGNRLNMALDDIENLIDKQTGQKSSIKSNVHFGEKLLNWSEMKANQSEQRIFELLEAEPTASAPEWLKRLADKLPTKTL
LHFAQESAGLGLTYWSYQANVNTINDLLSQTQFDTLDPVNDDKEYTYRTVKMLSTLAAITADSITLSQYSAKGVNIAARE
AERALLALQKQLPNMSKQLAEKLGVRSLQAYSQRLDTRLTAAPIKGLVVGANVAMSFVYFWDAFTSRRSGNKQAYLGYRI
GGVSSLLVALSAIGGPVGAVLLAVGLTGLLFSAYQIGRYGKNSFENLLYSSFWGTSKYYPFWSDFKKQEDIDTVQERIDV
ITDVVSNNNKAVTSDNIKYFDAALNIESQEFLNYFYAPKLTIVDSSIRPYGSEPYRYNLSYVFVLPDFKMNVSQLHGSIY
RELDDAKYAAYSVPEPDKAMTETFRSALAAAFEDRTLCIAKEDGLHVTVNVEFSHPARLIWCYEPTPNTVVPKRYLTNSG
YISTSQIGMLDEKPNTTPWGK

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