Gene Ent638_4298 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagEnt638_4298 
Symbol 
ID5110324 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameEnterobacter sp. 638 
KingdomBacteria 
Replicon accessionNC_009425 
Strand
Start bp120875 
End bp122731 
Gene Length1857 bp 
Protein Length618 aa 
Translation table11 
GC content56% 
IMG OID640480915 
Productconjugal transfer mating pair stabilization protein TraN 
Protein accessionYP_001165577 
Protein GI146284624 
COG category 
COG ID 
TIGRFAM ID[TIGR02750] type-F conjugative transfer system mating-pair stabilization protein TraN 


Plasmid Coverage information

Num covering plasmid clones28 
Plasmid unclonability p-value
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones12 
Fosmid unclonability p-value0.524718 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGAAACGAC TGATTCTGGC GGCGCTGCTG ATGACGCCCT GTGTTGTGTT GTCCGCTGAC 
CCGGCTTTTG AGGCGGGGGC AAGCTTCGGA AAAGGCAATG CCTCTGCAGG CACGGGCAGC
CTGAAAAATC CTGACGCGGT GACCGGCTCT ATTCCCGGCT ACAGCGCGAA ACCGCCGGAA
AGCGGCTACT ACGGCGGCGT TCAGGGGGGC GACAGTGGGC TTTCCGATAA AGGACAGGCC
GCGCTGGCGG GAAATGATGC GGCACAGTCC GTCATCAGCT CAGGCAACAG CAACCCCATC
CCGACCATCG ACCCAAACGC TCCCTTTATT ACCATTGGTA AAAATGCGGA AGCCGGATCG
GAAGGGGTGC TGGACGGAAC AAACAAACAG TGTACTGAAG TCACTGTCTC CAAATCGACT
TTCGAGAATT TCCAGTGCGA TAAGGATATC GCGTCGGTCG AGGCCTGCAC CCGTACCGCC
ACGGCCGGAG GACACACGAC CACAACCACG GTCCAGAAAA CGCTGACCCT GAGTGCCGCG
GATGCGGTGA TTTCTTATGG CGGTGGCTCA TCGTTCAGCT TCGCCTTTGT CTCCCCAGAA
ACCGGTCCGA TTATCAGCGC GCATTTTTAC TGGAGGGAGG GCGATACCAA AGCCGGCAAA
ATCAACTTCT GGGGCATCAG TGAAAAGATG ATTGGGAAAC AGTTTGACTG GGCGGTCCCG
GCTGCGGCGG GTTATCAGAT GTCCACCAAT ACTCCGCTGC CGGCGGCAAC CTATACCAGT
ACGTCCTGTA CCAGCGGCAA TAAAAACCGT TGCGAGGCAC ACATCAGGGA CATTATTGAG
GGGTTTAAAA ACGGTCAGGT CAGCGCGACC ATAGTGATTA CGATGAATGC CGTGACCCAG
ACGTTTGTCC CGGATGTGAC CTGGAAAACG TCCTGCGGTC TGGACATGTC GAAAGCGAGA
AAGACCACCT CCACCTGCAC GACGCCCGGC GGAAATCACA CCGTGGTGAA CAATGGCCAG
AGCTATCAGG TCTACAGCGA CTGCTGGCAG TACACCGATA ACTATGTCGT CCCTTCAAAC
TCCACCGGTA ACTGCGGCAC GCTGATGACC AACCCGAAAT GCACGGCCTC AGCGTCTAAA
TGTGTGGAAA GCACCGACGG GCAGTGTACG CATATGAGCT ACACATATCA GTGCCAGAAG
ACCTGGCAGT CAGGCGGTCT GGTGTGTGGC GGTGACTATA TCTGTAAGAC CGGAGACTGC
AATGAGGCCA ACGGGGCAGG GAGCAGCGGA TTTGACGTTG CCGTCGCCAA ACTGGCTGGC
CTGGCTTCGG CGGCGGATGA TGTTAAGGAC GATCAAAGTC AGATTGATAT CAAAGCCTTT
ACCGGCAAGG CGATGAGCTG TCGCAAGGCG TTCGCGGGGT TCTCCAACTG CTGCAAAGAC
TCAGGCTGGG GGCAGGATTC CGGACTGGCG GCCTGTAACT CCAATGAGAT GGCCATCGGC
AAAGCGAAAG CGAAAAAAGT GACGGTCATT GTCGGTGAGC GCTGCGACCG TCAGGTACTC
GGAGCCTGCA TCCAGAAAAG TCAGGTCTAC TGTGTCTTTG AAGGAAAACT GGCGCGCATC
ATTCAGGAGC AGGGGCGACG TGACCAGCTG GGCGTGAAGT TCGGCAGCGG GGACAGCCCG
AACTGTCGGG GTATCACCAT TCCTGAACTG CAGAACATCG ATTTTGACAA AATTAACTTC
TCTGATTTTT ACGAGGACCT GATGAAAAAT CAGAAGATCC CCGACACGTC GGCGCAGGTA
AAGCTCATCA AAGAACGTAT TGCGGCGCAG GTGAATCAGC AGGGAGGCAA TAAATGA
 
Protein sequence
MKRLILAALL MTPCVVLSAD PAFEAGASFG KGNASAGTGS LKNPDAVTGS IPGYSAKPPE 
SGYYGGVQGG DSGLSDKGQA ALAGNDAAQS VISSGNSNPI PTIDPNAPFI TIGKNAEAGS
EGVLDGTNKQ CTEVTVSKST FENFQCDKDI ASVEACTRTA TAGGHTTTTT VQKTLTLSAA
DAVISYGGGS SFSFAFVSPE TGPIISAHFY WREGDTKAGK INFWGISEKM IGKQFDWAVP
AAAGYQMSTN TPLPAATYTS TSCTSGNKNR CEAHIRDIIE GFKNGQVSAT IVITMNAVTQ
TFVPDVTWKT SCGLDMSKAR KTTSTCTTPG GNHTVVNNGQ SYQVYSDCWQ YTDNYVVPSN
STGNCGTLMT NPKCTASASK CVESTDGQCT HMSYTYQCQK TWQSGGLVCG GDYICKTGDC
NEANGAGSSG FDVAVAKLAG LASAADDVKD DQSQIDIKAF TGKAMSCRKA FAGFSNCCKD
SGWGQDSGLA ACNSNEMAIG KAKAKKVTVI VGERCDRQVL GACIQKSQVY CVFEGKLARI
IQEQGRRDQL GVKFGSGDSP NCRGITIPEL QNIDFDKINF SDFYEDLMKN QKIPDTSAQV
KLIKERIAAQ VNQQGGNK