Gene VIBHAR_06106 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagVIBHAR_06106 
Symbol 
ID5556999 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameVibrio harveyi ATCC BAA-1116 
KingdomBacteria 
Replicon accessionNC_009784 
Strand
Start bp1268479 
End bp1270017 
Gene Length1539 bp 
Protein Length512 aa 
Translation table11 
GC content49% 
IMG OID640910580 
ProductF0F1 ATP synthase subunit alpha 
Protein accessionYP_001448226 
Protein GI156977320 
COG category[C] Energy production and conversion 
COG ID[COG0056] F0F1-type ATP synthase, alpha subunit 
TIGRFAM ID[TIGR00962] proton translocating ATP synthase, F1 alpha subunit 


Plasmid Coverage information

Num covering plasmid clonesn/a 
Plasmid unclonability p-valuen/a 
Plasmid hitchhikingn/a 
Plasmid clonabilityn/a 
 

Fosmid Coverage information

Num covering fosmid clonesn/a 
Fosmid unclonability p-valuen/a 
Fosmid Hitchhikern/a 
Fosmid clonabilityn/a 
 

Sequence

Gene sequence
ATGCAATTAA ATTCAAATGA AATCAGTGAA TTAATCAGAG AGCGAATTGT TAACTTCAAC 
CTCGAAAGTG AAGCGAGAAA TGAAGGTACT ATCGTCTCTG TGAGTGACGG CATCATCACA
ATTCACGGTC TTGCAGATGT TATGCAAGGC GAGATGCTAG AACTGCCAAA TAACCGCTTC
GCGTTGGCAC TTAACTTAGA GCGTCATTCC GTCGGCGCGG TTGTGATGGG TCCATATGCG
GACTTGTCAG AAGGGATGAA AGTAAAAGGC ACCGGTCGTA TTCTTGAAGT GCCAGTCGGC
AACGGTTTGC TAGGTCGCGT AGTGAACACG CTAGGTCAAC CAATCGATGG TAAAGGCGCA
GTGTCATTCG ATCGTATGGA CCCTGTTGAA GTGATTGCCC CTGGTGTTAT CGACCGTAAG
TCTGTCGATC AGCCAATCCA AACCGGTTAC AAAGCGGTAG ACTCCATGGT GCCAATCGGT
CGTGGTCAGC GTGAGTTGAT CATCGGTGAC CGTCAGACAG GTAAAACCGC GATGGCGATT
GATGCCATCA TCAACCAAAA AGAACTGGGC GTTAAATGTA TTTACGTCGC AATTGGTCAA
AAAGCATCGA CCATTGCCAA CGTGGTTCGC AAACTAGAAG AGCACGGTGC ACTAGAAAAC
ACCATTGTTG TGGTTGCATC AGCATCAGAA GCGGCAGCGC TGCAATACCT CGCGCCATAC
GCAGGTTGTA CCATGGGCGA ATACTTCCGT GACCGTGGTG AAGATGCGCT GATTGTTTAT
GACGATCTAT CAAAACAAGC GGTGGCTTAC CGTCAAATCT CACTACTGCT AAAACGTCCA
CCAGGTCGTG AAGCCTTCCC TGGTGATGTT TTCTACCTCC ACTCACGCCT TCTAGAACGT
GCTGCACGTG TTAACGAAGA ATACGTAGAG CGATTCACTA ACGGTGAAGT GAAAGGCAAA
ACAGGTTCTC TAACCGCACT GCCAATCATC GAAACCCAAG CGGGTGACGT ATCGGCGTTC
GTACCAACCA ACGTAATCTC GATTACCGAT GGTCAAATCT TCCTACAAAC TCAGCTATTC
AACTCAGGCT TACGCCCAGC GGTTGACCCA GGTATTTCGG TATCTCGTGT AGGTGGTGCA
GCGCAAACCA AAGTGATCAA GAAACTGTCG GGTGGTATTC GTACCGCGTT GGCGCAATAC
CGTGAATTGG CCGCATTTGC TCAGTTCTCT TCTGACCTAG ATGAAGCGAC ACGTCGTCAG
CTTGACCACG GTGAGAAAGT AACGGAACTC ATGAAGCAGA AACAGTACGC ACCAATGACG
GTTGCGGAGC AAGCACTGGC GATCTTTGCA GCAGAGAAGG GTTACCTCAC TGATGTGGCA
CTAAACCAAA TCTCTCGTTT TGAAGAAGAG TTGATGGCAT TTGGTCGTAC AAACGCGCAG
CCGCTACTGG ACAAGATCAA CCAATCCGGT GATTACAACG ACGAGATCGA GAGTGAGCTA
CACAGCTTGC TGAAAGAGTT TACTGCGCTG CAATCGTAG
 
Protein sequence
MQLNSNEISE LIRERIVNFN LESEARNEGT IVSVSDGIIT IHGLADVMQG EMLELPNNRF 
ALALNLERHS VGAVVMGPYA DLSEGMKVKG TGRILEVPVG NGLLGRVVNT LGQPIDGKGA
VSFDRMDPVE VIAPGVIDRK SVDQPIQTGY KAVDSMVPIG RGQRELIIGD RQTGKTAMAI
DAIINQKELG VKCIYVAIGQ KASTIANVVR KLEEHGALEN TIVVVASASE AAALQYLAPY
AGCTMGEYFR DRGEDALIVY DDLSKQAVAY RQISLLLKRP PGREAFPGDV FYLHSRLLER
AARVNEEYVE RFTNGEVKGK TGSLTALPII ETQAGDVSAF VPTNVISITD GQIFLQTQLF
NSGLRPAVDP GISVSRVGGA AQTKVIKKLS GGIRTALAQY RELAAFAQFS SDLDEATRRQ
LDHGEKVTEL MKQKQYAPMT VAEQALAIFA AEKGYLTDVA LNQISRFEEE LMAFGRTNAQ
PLLDKINQSG DYNDEIESEL HSLLKEFTAL QS