Gene Ent638_2560 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagEnt638_2560 
Symbol 
ID5113827 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameEnterobacter sp. 638 
KingdomBacteria 
Replicon accessionNC_009436 
Strand
Start bp2757886 
End bp2759535 
Gene Length1650 bp 
Protein Length549 aa 
Translation table11 
GC content54% 
IMG OID640492746 
Producttartrate/fumarate subfamily Fe-S type hydro-lyase beta subunit 
Protein accessionYP_001177280 
Protein GI146312206 
COG category[C] Energy production and conversion 
COG ID[COG1838] Tartrate dehydratase beta subunit/Fumarate hydratase class I, C-terminal domain
[COG1951] Tartrate dehydratase alpha subunit/Fumarate hydratase class I, N-terminal domain 
TIGRFAM ID[TIGR00722] hydro-lyases, Fe-S type, tartrate/fumarate subfamily, alpha region
[TIGR00723] hydro-lyases, Fe-S type, tartrate/fumarate subfamily, beta region 


Plasmid Coverage information

Num covering plasmid clones
Plasmid unclonability p-value0.0557449 
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones
Fosmid unclonability p-value0.126998 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGTCGAACA AACCCTTTTA TTACCAGAAT CCCTTCCCGC TCGAACACGA CGACACCGAC 
TATTATCTGC TGACCAAAGA ACACGTCTCC GTGGTAGAGT TTGCGGGCCA GGAAATCCTT
AAAGTCGAAC CCGAAGCCCT GACGCTACTC GCGCAGCAGG CTTTTCACGA CGCAGCCTTT
ATGCTCCGCC CGTCGCACCA GAAACAGGTC GCGGCCATTC TTCACGACCC TGACGCCAGC
GAGAACGATA AATACGTGGC GCTTCAGTTC CTGCGTAATT CGGAAATCGC TGCCAAAGGC
GTGTTACCTA CCTGCCAGGA TACGGGTACG GCCATCATCA TGGGCAAAAA AGGGCAACGC
GTGTGGACCG GCGGCGGTGA CGAAGCCGCG TTGAGTCAGG GCGTGTACAA CACCTATATC
GAAGACAATC TGCGCTACTC GCAAAATGCT GCGCTGGATA TGTACAAAGA AGTGAATACG
GGGACCAATT TACCGGCACA AATCGACCTG TATAGCGTTG ATGGCGATGA GTACAAGTTC
CTGTGCATGG CAAAAGGCGG CGGGTCTGCC AACAAAACCT ATCTGTATCA GGAAACCAAA
GCGCTCATTA CCCCTGCGAA ATTGAAAAAT TATCTCGTGG ATAAAATGCG CTCGCTGGGG
ACCGCAGCCT GCCCTCCGTA TCACATCGCG TTTGTCATTG GGGGGACGTC CGCAGAAAGC
ACGCTGAAAA CCGTCAAACT GGCGTCGACC CGTTACTACG ATGGTTTGCC AACCGAAGGG
AATGAGCATG GTCAGGCGTT CCGCGACGTC CAGCTCGAAC AGGAACTGTT ACAGGAAGCG
CAGAATCTTG GGTTAGGCGC GCAGTTCGGC GGTAAATACT TCGCCCATGA TATTCGGGTG
ATTCGATTGC CGCGCCACGG CGCCTCCTGC CCTGTCGGCA TGGGCGTGTC CTGCTCGGCT
GACCGCAACA TCAAAGCCAA AATCAACCGC GACGGGATCT GGATTGAAAA ACTCGAACAC
AATCCGGCGC AATACATTCC TGAATCGCTG CGTGAGCAAG GTGAAGGCGA CGTCGTTAGC
ATCAATCTGA ACAGTCCGAT GAACGAGATT CTGGCGCAGC TTACCGCACA TCCGGTTTCG
ACCCGACTAT CGCTGAACGG CACTATTATT GTGGCGCGCG ACATGGCCCA CGCGAAGCTC
AAAGAGCTGA TCGATAACGG CGAAGAGCTG CCGCAGTACG TGAAAGATCA TCCGATTTAT
TACGCAGGTC CGGCGAAAAC ACCTGAAGGT TATGCATCCG GGTCATTAGG CCCCACCACA
GCGGGTCGTA TGGACTCGTA TGTGGATTTA CTGCAATCGC ACGGTGCCAG TATGGTAATG
CTGGCGAAAG GCAACCGCAG TCAGCAGGTG ACCGATGCCT GCCACAAACA CGGCGGGTTC
TATCTCGGCA GTATCGGCGG CCCGGCTGCC GTGCTGGCGC AGAACAGCAT TAAAAGCCTG
GAATGTGTGG CGTATCCGGA ACTGGGAATG GAAGCGATCT GGAAAATCGA AGTCGAAAAC
TTCCCGGCCT TTATTCTTGC CGATGATAAA GGCAACGATT TCTTCCAGCA GATTCAGAAC
AAGCAGTGCG CCGGGTGTTC GCAGCGTTAA
 
Protein sequence
MSNKPFYYQN PFPLEHDDTD YYLLTKEHVS VVEFAGQEIL KVEPEALTLL AQQAFHDAAF 
MLRPSHQKQV AAILHDPDAS ENDKYVALQF LRNSEIAAKG VLPTCQDTGT AIIMGKKGQR
VWTGGGDEAA LSQGVYNTYI EDNLRYSQNA ALDMYKEVNT GTNLPAQIDL YSVDGDEYKF
LCMAKGGGSA NKTYLYQETK ALITPAKLKN YLVDKMRSLG TAACPPYHIA FVIGGTSAES
TLKTVKLAST RYYDGLPTEG NEHGQAFRDV QLEQELLQEA QNLGLGAQFG GKYFAHDIRV
IRLPRHGASC PVGMGVSCSA DRNIKAKINR DGIWIEKLEH NPAQYIPESL REQGEGDVVS
INLNSPMNEI LAQLTAHPVS TRLSLNGTII VARDMAHAKL KELIDNGEEL PQYVKDHPIY
YAGPAKTPEG YASGSLGPTT AGRMDSYVDL LQSHGASMVM LAKGNRSQQV TDACHKHGGF
YLGSIGGPAA VLAQNSIKSL ECVAYPELGM EAIWKIEVEN FPAFILADDK GNDFFQQIQN
KQCAGCSQR