Gene EcSMS35_2437 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagEcSMS35_2437 
SymbolnuoG 
ID6145987 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameEscherichia coli SMS-3-5 
KingdomBacteria 
Replicon accessionNC_010498 
Strand
Start bp2484315 
End bp2487041 
Gene Length2727 bp 
Protein Length908 aa 
Translation table11 
GC content57% 
IMG OID641617309 
ProductNADH dehydrogenase subunit G 
Protein accessionYP_001744481 
Protein GI170680130 
COG category[C] Energy production and conversion 
COG ID[COG1034] NADH dehydrogenase/NADH:ubiquinone oxidoreductase 75 kD subunit (chain G) 
TIGRFAM ID[TIGR01973] NADH-quinone oxidoreductase, chain G 


Plasmid Coverage information

Num covering plasmid clones23 
Plasmid unclonability p-value
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones53 
Fosmid unclonability p-value
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGGCTACAA TTCATGTAGA CGGCAAAGAA TACGAGGTTA ACGGAGCGGA CAACCTGCTG 
GAAGCTTGTC TGTCTCTGGG CCTTGATATT CCTTACTTTT GCTGGCATCC GGCGCTGGGA
AGCGTCGGTG CTTGCCGCCA GTGTGCGGTG AAGCAATACC AAAACGCGGA AGACACGCGT
GGTCGCCTGG TGATGTCCTG TATGACACCG GCTTCCGATG GCACCTTTAT TTCCATTGAC
GACGAAGAAG CGAAACAGTT CCGTGAAAGT GTGGTCGAGT GGTTAATGAC CAACCACCCG
CACGATTGTC CGGTATGTGA AGAAGGCGGT AACTGTCATC TTCAGGATAT GACCGTGATG
ACCGGACACA GCTTCCGTCG CTACCGTTTC ACCAAACGTA CCCACCGTAA TCAGGATTTG
GGGCCGTTCA TCTCTCACGA AATGAACCGC TGCATCGCCT GCTACCGCTG CGTGCGTTAC
TACAAAGATT ACGCTGACGG CACGGACCTG GGCGTTTACG GTGCGCACGA CAACGTCTAC
TTCGGTCGCC CGGAAGACGG CACGCTGGAA AGCGAATTTT CCGGTAACCT GGTCGAAATT
TGCCCGACCG GCGTATTCAC CGACAAAACG CACTCCGAGC GTTACAACCG TAAATGGGAT
ATGCAGTTTG CGCCGAGCAT CTGCCAGCAA TGTTCCATCG GCTGTAACAT CAGCCCCGGC
GAGCGTTATG GCGAACTGCG TCGAATCGAA AACCGTTACA ACGGTACAGT AAACCACTAC
TTCCTCTGCG ACCGTGGTCG TTTCGGTTAC GGTTACGTGA ACCTGAAAGA TCGTCCGCGT
CAGCCAGTAC AGCGTCGTGG CGATGATTTC ATTACCCTCA ACGCCGAACA GGCAATGCAG
GGCGCAGCAG ATATTCTGCG TCAGTCGAAG AAAGTGATCG GTATTGGTTC TCCGCGTGCC
AGCGTGGAAA GCAACTTTGC GCTGCGTGAG CTGGTGGGCG AAGAAAACTT CTACACCGGT
ATCGCTCACG GTGAGCAGGA ACGTCTGCAA CTGGCGCTGA AAGTGCTGCG TGAAGGCGGC
ATTTATACGC CGGCACTGCG CGAAATCGAA TCTTACGATG CGGTACTGGT GCTGGGCGAA
GACGTTACCC AGACCGGCGC GCGCGTCGCG CTGGCAGTTC GTCAGGCGGT AAAAGGTAAA
GCGCGCGAAA TGGCGGCAGC ACAGAAAGTG GCTGACTGGC AGATTGCGGC AATCCTCAAC
ATCGGTCAAC GTGCTAAGCA TCCGCTGTTT GTTACCAACG TTGATGACAC CCGTCTGGAT
GATATCGCGG CGTGGACTTA CCGCGCACCG GTTGAAGATC AGGCGCGTTT AGGTTTTGCC
ATCGCCCATG CGCTGGATAA CTCCGCGCCA GCGGTTGACG GTATCGAACC TGAGCTGCAA
AGCAAAATCG ACGTCATCGT GCAGGCACTG GCTGGTGCGA AGAAACCGTT GATTATCTCC
GGGACGAACG CTGGTAGCGC TGAAGTGATT CAGGCGGCGG CTAACGTGGC GAAAGCCCTG
AAAGGTCGCG GCGCTGACGT TGGTATCACC ATGATTGCCC GTTCCGTCAA CAGCATGGGG
CTGGGCATTA TGGGTGGCGG TTCGCTTGAA GAAGCGTTAA CCGAACTGGA AACCGGACGC
GCCGACGCGG TGGTGGTGTT GGAAAACGAT CTGCATCGTC ACGCTTCTGC TACCCGCGTG
AATGCTGCGC TGGCTAAAGC GCCGCTGGTG ATGGTGGTTG ACCATCAACG CACAGCGATT
ATGGAAAACG CCCATCTGGT ACTTTCTGCT GCCAGCTTTG CTGAAAGCGA CGGTACGGTG
ATTAACAACG AAGGCCGTGC CCAACGTTTC TTCCAGGTTT ACGATCCGGC TTATTACGAC
AGCAAAACTG TCATGCTGGA AAGCTGGCGC TGGCTGCACT CGCTGCATAG CACCCTGCTG
AGCCGTGAAG TGGACTGGAC GCAGCTCGAC CATGTGATTG ACGCTGTTGT GGCGAAAATC
CCGGAACTGG CGGGTATCAA AGATGCTGCG CCGGATGCGA CATTCCGTAT TCGTGGGCAG
AAACTGGCCC GTGAGCCGCA CCGTTACAGC GGTCGTACCG CCATGCGCGC CAATATCAGC
GTTCATGAGC CGCGTCAGCC GCAGGATATT GACACCATGT TCACCTTCTC GATGGAAGGT
AACAACCAGC CGACCGCGCA CCGTTCGCAA GTGCCGTTTG CCTGGGCACC GGGCTGGAAC
TCCCCGCAGG CGTGGAACAA ATTCCAGGAC GAAGTGGGCG GCAAACTGCG CTTTGGCGAT
CCGGGCGTGC GTCTGTTTGA AACCAGCGAA AATGGTCTGG ATTACTTCAC CAGCGTACCG
GCACGCTTCC AGCCGCAGGA CGGGAAATGG CGTATCGCGC CGTATTACCA CCTGTTTGGC
AGCGATGAAT TGTCACAGCG TGCTCCGGTC TTCCAGAGCC GTATGCCGCA GCCGTACATC
AAACTCAACC CAGCGGATGC CGCGAAGTTG GGTGTGAACG CAGGTACACG CGTCTCCTTT
AGTTACGATG GCAACACGGT CACGCTGCCG GTTGAAATCG CCGAAGGACT GACGGCAGGG
CAGGTGGGCT TGCCGATGGG CATGTCCGGT ATTGCTCCGG TGCTGGCTGG CGCGCATCTT
GAGGATCTCA AGGAGGCACA ACAATGA
 
Protein sequence
MATIHVDGKE YEVNGADNLL EACLSLGLDI PYFCWHPALG SVGACRQCAV KQYQNAEDTR 
GRLVMSCMTP ASDGTFISID DEEAKQFRES VVEWLMTNHP HDCPVCEEGG NCHLQDMTVM
TGHSFRRYRF TKRTHRNQDL GPFISHEMNR CIACYRCVRY YKDYADGTDL GVYGAHDNVY
FGRPEDGTLE SEFSGNLVEI CPTGVFTDKT HSERYNRKWD MQFAPSICQQ CSIGCNISPG
ERYGELRRIE NRYNGTVNHY FLCDRGRFGY GYVNLKDRPR QPVQRRGDDF ITLNAEQAMQ
GAADILRQSK KVIGIGSPRA SVESNFALRE LVGEENFYTG IAHGEQERLQ LALKVLREGG
IYTPALREIE SYDAVLVLGE DVTQTGARVA LAVRQAVKGK AREMAAAQKV ADWQIAAILN
IGQRAKHPLF VTNVDDTRLD DIAAWTYRAP VEDQARLGFA IAHALDNSAP AVDGIEPELQ
SKIDVIVQAL AGAKKPLIIS GTNAGSAEVI QAAANVAKAL KGRGADVGIT MIARSVNSMG
LGIMGGGSLE EALTELETGR ADAVVVLEND LHRHASATRV NAALAKAPLV MVVDHQRTAI
MENAHLVLSA ASFAESDGTV INNEGRAQRF FQVYDPAYYD SKTVMLESWR WLHSLHSTLL
SREVDWTQLD HVIDAVVAKI PELAGIKDAA PDATFRIRGQ KLAREPHRYS GRTAMRANIS
VHEPRQPQDI DTMFTFSMEG NNQPTAHRSQ VPFAWAPGWN SPQAWNKFQD EVGGKLRFGD
PGVRLFETSE NGLDYFTSVP ARFQPQDGKW RIAPYYHLFG SDELSQRAPV FQSRMPQPYI
KLNPADAAKL GVNAGTRVSF SYDGNTVTLP VEIAEGLTAG QVGLPMGMSG IAPVLAGAHL
EDLKEAQQ