Gene Ent638_3393 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagEnt638_3393 
Symbol 
ID5112378 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameEnterobacter sp. 638 
KingdomBacteria 
Replicon accessionNC_009436 
Strand
Start bp3698105 
End bp3699967 
Gene Length1863 bp 
Protein Length620 aa 
Translation table11 
GC content53% 
IMG OID640493598 
Productbifunctional glutathionylspermidine amidase/glutathionylspermidine synthetase 
Protein accessionYP_001178104 
Protein GI146313030 
COG category[E] Amino acid transport and metabolism 
COG ID[COG0754] Glutathionylspermidine synthase 
TIGRFAM ID 


Plasmid Coverage information

Num covering plasmid clones15 
Plasmid unclonability p-value
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones14 
Fosmid unclonability p-value
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGCGTAAAG GAAAGTTAAG CAGTGACGCT CCGTTTGGGA CGTTGTTAGG TTATGCGCCG 
GGAGGCGTGG CGATTTACTC CTCGAATTAC AGCAGCCTTG ACCCGCGTCA GTACCCGGAA
GACGCGGAGT TTCGTAGCTA TATTGGCAAC GAATATATGG GGCATAAATG GCAGTGCGTC
GAGTTTGCGC GCCGCTTTCT GTTTCTCAAT TACGGTTATG TCTTTACCGA CGTCGGCATG
GCGTGGGAGA TTTTCTCGCT GCGCTTTCTG CGCCAGGTCG TTAATGACAA CATTCTGCCG
TTACAGGCTT TCGCGAACGG TTCAAAGCGC GCACCAGACG CTGGCGCGCT GCTCATCTGG
CGCAATGACG GCGAATTCAG TGAAACCGGA CACGTTGCTA TCATCACCCA GTTGATGGGC
GATAAAGTGC GTATTGCAGA ACAGAACGTG CTGCATTCGC CGCTGCCGAT TGGGCAGCAG
TGGACGCGCG AGCTGCGCTT ATCAGTCGAA AATGGCCGCT ATACGCTGCA TGACACCTAT
ACCGATACCC ACATTCTTGG CTGGATGATC CAGACCGATG ACACCGAACA CAGCTTGCCG
CAGCCGCAAA TCGAGCCTGA GTTGCTTAAC CTTACCGGCG CGCGACTGCA AAACAAACGC
CAGTTCGACG GTAAATGGCT CAATGAAAAT GACTCGCTAC AGCAGGCGTA TGTTCGGGCG
AACGGTCACG TCATTAATAA AGATCCCTGC CAGTATTTCA CTATTACCGA AAGCGCCGAG
CAGGAGCTGA TCAAGGCGAC CAACGAACTG CATCTCATGT ATTTGCACGC CACCGACAAA
GTGTTGAAAG ACGATAATCT TCTGGCACTT TTCGACATCC CGAAAATCCT CTGGCCGCGC
TTGCGTCTTT CCTGGCAGTG GCGCCGCCAC CATATGATCA CGGGCCGTAT GGATTTTTGC
ATGGATGAGC GTGGGCTGAA GGTTTACGAA TACAACGCGG ATTCAGCATC CTGCCATACC
GAAGGCGGTC TTATCCTCGA AGAGTGGGTA AAAAACGGTT ATCGCGGGAC GGGGCATAAT
CCGGCGGAAG GCTTGCTGGA GGAACTGACC GGCGCATGGA AACACAGCAA TGCGCGTCCG
TTCGTTCACA TCATGCAGGA CAATGACATC GAAGAGGATT ATCACGCGCT GTTTATTCAG
CGCTCGCTGA TGCAGGCAGG CTTTGAGACC AAAATTCTTC ACGGGCTGGA GATGTTGAGC
TGGGATGTCG CCGGACAGCT GGTGGATGAT GACGGCCGCC ACGTCAACTG CGTGTGGAAA
ACCTGGGCGT GGGAAACCGC GATCGAGCAG GTCCGTGAGG TCAGCGAAAC TGAATATGCC
GCCGTACCGA TTCGTACCGG TCATCCACAG AATGCAGTGC GTTTAATCGA TGTGCTGCTG
CGCCCGGAGG TGCTGGTCTT TGAACCGCTA TGGACGGTCA TTCCCGGCAA CAAAGCGATT
CTGCCGGTGC TGTGGCAACT GTTCCCGAAT CATCGCTACC TGCTGGATAC TGATTTTGAG
GTCAATGAAC GGCTGAGCAA AACCGGCTAT GCGGTGAAGC CTATCGCCGG GCGATGCGGC
AGTAATATCG ATCTCATTAG CGCTCAGGAA GAGCTGCTGG ATAAATCCAG CGGTAAGTTT
GTCGATCGCA AAAATATCTA TCAGCAGCTG TGGTGTCTCC CAAAAGTGGA TGGCAAATAT
ATTCAGGTTT GCACTTTTAC CGTGGGCGGA AATTACGGCG GGACCTGTTT GCGCGGGGAT
GATTCGCTGG TGATTAAAAA AGAGAGTGAT ATCGAACCGT TAATTGTGGT GAAAGATAAA
TAG
 
Protein sequence
MRKGKLSSDA PFGTLLGYAP GGVAIYSSNY SSLDPRQYPE DAEFRSYIGN EYMGHKWQCV 
EFARRFLFLN YGYVFTDVGM AWEIFSLRFL RQVVNDNILP LQAFANGSKR APDAGALLIW
RNDGEFSETG HVAIITQLMG DKVRIAEQNV LHSPLPIGQQ WTRELRLSVE NGRYTLHDTY
TDTHILGWMI QTDDTEHSLP QPQIEPELLN LTGARLQNKR QFDGKWLNEN DSLQQAYVRA
NGHVINKDPC QYFTITESAE QELIKATNEL HLMYLHATDK VLKDDNLLAL FDIPKILWPR
LRLSWQWRRH HMITGRMDFC MDERGLKVYE YNADSASCHT EGGLILEEWV KNGYRGTGHN
PAEGLLEELT GAWKHSNARP FVHIMQDNDI EEDYHALFIQ RSLMQAGFET KILHGLEMLS
WDVAGQLVDD DGRHVNCVWK TWAWETAIEQ VREVSETEYA AVPIRTGHPQ NAVRLIDVLL
RPEVLVFEPL WTVIPGNKAI LPVLWQLFPN HRYLLDTDFE VNERLSKTGY AVKPIAGRCG
SNIDLISAQE ELLDKSSGKF VDRKNIYQQL WCLPKVDGKY IQVCTFTVGG NYGGTCLRGD
DSLVIKKESD IEPLIVVKDK