Gene Gmet_1722 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagGmet_1722 
Symbol 
ID3741398 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameGeobacter metallireducens GS-15 
KingdomBacteria 
Replicon accessionNC_007517 
Strand
Start bp1936255 
End bp1939503 
Gene Length3249 bp 
Protein Length1082 aa 
Translation table11 
GC content63% 
IMG OID637779007 
Productmethylmalonyl-CoA mutase-like 
Protein accessionYP_384678 
Protein GI78222931 
COG category[E] Amino acid transport and metabolism
[I] Lipid transport and metabolism 
COG ID[COG1703] Putative periplasmic protein kinase ArgK and related GTPases of G3E family
[COG1884] Methylmalonyl-CoA mutase, N-terminal domain/subunit
[COG2185] Methylmalonyl-CoA mutase, C-terminal domain/subunit (cobalamin-binding) 
TIGRFAM ID[TIGR00640] methylmalonyl-CoA mutase C-terminal domain
[TIGR00641] methylmalonyl-CoA mutase N-terminal domain 


Plasmid Coverage information

Num covering plasmid clones11 
Plasmid unclonability p-value0.181913 
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones47 
Fosmid unclonability p-value0.685956 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGCATACCG CCGCCGCAGC ACCCTACAAA ACCACCCACA AGGTCCGCTT CGTCACCGCC 
ACGAGCCTCT TCGACGGTCA CGACGCCTCC ACCAACATCA TCCGTCGTAT TCTGCAGGCC
TCTGGGGCCG AGGTTATCCA CCTGGGGCAC AACCGCTCCG TGGACGAGAT CGTCACCGCC
GCCATCCAGG AGGATGCCCA AGGAATTGCC GTCTCCTGCT ACCAGGGAGG GCACCTGGAG
TTCTTCAAGT ACATCAAGGA CCAGCTGCGG GAGCGAGGTG CGGAGCAGGT GCGGATATTC
GGCGGCGGCG GCGGGGTCAT CATCCCGGAC GAGATCCGGG AGCTGGAGTC CTACGGCATC
TCCAAGATTT TTTCCCCCGA AGACGGCAGG CGCATGGGGC TCCAGGGGAT GATCAACTTC
ATGCTCAAGG AGTGCGATTT TGCCCCCCAG CGGAACATCG ACGAAGAGAT CAACAAGCTC
CAGCACCAGG ATATCCGGGC CGTCAACACC CTCATCACCC TGGCGGAGCA GGATGTCCAT
GACCATTCCG GCGGCTACGG CCCCCTGCGG GAGAGGATCA GGACCATGGC CCGCCCCGCG
CCGGTAGTGG GGGTCACCGG TACGGGCGGT GCCGGCAAGA GCTCCCTCAC CGACGAGCTG
GTGCGCCGGT TCCTGCGGGA TTTCCCGGAG AAGAGCGTCG CCATTCTGGC GGTGGACCCG
AGTCGCCAAC GGACCGGTGG CGCACTCCTG GGGGACCGGA TCCGGATGAA CGCCATCAAC
ACCAGCAAGG TCTACATGCG CTCCCTGGCC ACCCGCGATT CCCACTCGGA GCTGTCTGCA
GCCATCAACG ATGCCATTGA TGTGGTGAAG GCCGCCGGTT TCGATCTCGT CATCGTGGAG
ACGAGCGGCA TCGGTCAGGG GGATGCCCGG GTTGTGGAGA TCGCCGATGT CTCCCTCTAC
GTCATGACCT GCGAGTTCGG CGCTCCGACC CAACTGGAGA AGATCGACAT GCTCGACTTC
GCCGATCTCA TCGCCCTCAA CAAGTTCGAG CGGAAAGGGG CCGAGGATGC CCTGCGCAAC
GTGCGCAAAC AGTACCGGCG TAACCGCAAC CTCTTCGAGG CGGCCGACGA AGAGCTGCCG
GTGTTCGGCA CCATCGCGGC CCAGTTCAAC GACCCCGGCA CCAACGTCCT CTACCGGGCC
CTCATGGAAA CCCTGAACAC CAAAACGGGC TCGGGATTCC AGTCGAACCT GGTCATCACC
GAGAAGGAGA GCCTCAAGCA GTACATCATC CCGCCGGACC GGATCCACTA CCTGGGAGAG
ATCGTGCAGA CGGTGCGCGG CTACCGGAAA CGGGTGCAGG AGCAGGCCGG CGTTGCCCGG
CGGCTCTTCC AACTGCAGGG GGCGAAGGAA GTGGTGGGCG ATTCGCCGGC CACGGGGGAA
CTGGAGAGGC AGATCGCCCT CCATGAGGCA AAACTCCACG AAGAGCCGAA AAAGATCCTC
GCCGACTGGC CCTGCCTGAA GGAAACCTAC CGCCAGGATC AGCTGGTGAC GAAGGTACGG
GACAAGGAGA TCCGCAGCGA CCTCTACACC ACCACCCTCT CCGGCACCCG GATTCCCAAG
GTCTGCCTCC CCGACTTCGC CGATTACGGG GAGATCGTCC GCTGGTCCAT GCTGGAGAAC
GTGCCGGGGC TCTTCCCCTA CACCGCCGGG GTCTTCCCCT TCAAGCGGGC CGAGGAGGAC
CCGAAGCGCC AGTTCGCCGG CGAGGGGTCG CCGGAGCGGA CCAACCGCCG CTTCCACTAT
CTCTGCAAGG ACGACGACGC CAAGCGGCTC TCCACCGCCT TCGACAGCGT CACCCTCTAC
GGCGAGGACC CGGACTATCC CCCCGACATC TACGGCAAGG TGGGCGAGAG CGGGGTCTCC
ATCTGCACCG TTGAGGACAT GCAGAAGCTC TATGCCGGCT TCGACCTCTG CGCCCCCAAC
ACCAGTGTCT CCATCACCAT CAACGGCCCG GCCCCCATGA TGCTCGCCTT CTTCTTCAAC
GCCGCCATCG AGCAGCAGGT GGCCGCGTTC CGGGAGAAGA ACGGCCGTGC GCCCAGCGGC
GCCGAGTACG CCGAGATCAG GAGCTGTACC CTCCAGACGG TGCGCGGCAC CGTGCAGGCC
GACATCCTCA AGGAGGACCA GGGGCAGAAC ACCTGCATCT TCTCCACCGA GTTCGCCCTC
CGGATGATGG GTGACATCCA GCAGTACTTC ATCGAGCAGA AGGTGCGGAA CTACTACTCG
GTCTCCATCA GCGGCTACCA CATTGCCGAG GCGGGGGCTA ACCCCATCTC CCAGCTGGCC
TTCACCCTCT CCAACGGCTT CACCTACGTG GAGTACTACC TCTCCCGCGG CATGAAGATC
GACGACTTCG CCCCGAACCT CTCCTACTTC TTCAGTAACG GCCTCGACCC GGAGTACACG
GTCATCGGCC GGGTGGCGCG GCGCATCTGG GCCGTGGTGA TGCGGGAGAA GTACGGCGCC
AACGACCGGA GCCAGAAGCT CAAGTACCAC ATCCAGACCA GCGGCCGCTC CCTCCACGCC
CAGGAGATGG ATTTCAACGA CATCCGCACG ACGCTTCAGG CCCTCATGGC TATTTACGAC
AACTGCAACT CCCTCCACAC CAACGCCTAC GACGAGGCGG TCACTACCCC AACCGAGGAG
TCGGTGCGCC GGGCCATGGC GATCCAGATG ATTATCACCC GGGAGTTCGG CCTGGCGAAG
AACGAGAACT CCTGCCAGGG CTCCTTCATC ATCGAGGAGC TGACCGACCT GGTGGAAGAG
GCGGTGATGT GTGAATTCGA GCGGATCGAC CAGCGGGGGG GCGTCCTGGG GGCAATGGAG
ACCCAGTACC AGCGGAGCAA GATCCAGGAT GAATCCATGC TCTACGAGCA CAAGAAACAC
AGCGGCGAGC TCCCCATCAT CGGGGTCAAC TGCTTCCTCA ATCCCCGGGC CTGCGAGGAG
GGGTACCAGG TGCCAGGGGA ACTGGCCCGT GCCACGAAAG AGGAGAAGGA GCAGCAGATC
GCCAACCTGC GGGCCTTCCA GGAGCGGCAC AGGAATGAGG CACCACAGGC GCTGAAGCGA
CTGCAGGAGG TTGCCGTAAA CGGCGGCAAC ATCTTTGCCG AGCTCATGGA AACCGCCAAG
GTGGCGTCCC TGGGGCAGAT CAGCCATGCG CTGTATGAGG TGGGGGGAAA ATACCGCCGG
AACATGTGA
 
Protein sequence
MHTAAAAPYK TTHKVRFVTA TSLFDGHDAS TNIIRRILQA SGAEVIHLGH NRSVDEIVTA 
AIQEDAQGIA VSCYQGGHLE FFKYIKDQLR ERGAEQVRIF GGGGGVIIPD EIRELESYGI
SKIFSPEDGR RMGLQGMINF MLKECDFAPQ RNIDEEINKL QHQDIRAVNT LITLAEQDVH
DHSGGYGPLR ERIRTMARPA PVVGVTGTGG AGKSSLTDEL VRRFLRDFPE KSVAILAVDP
SRQRTGGALL GDRIRMNAIN TSKVYMRSLA TRDSHSELSA AINDAIDVVK AAGFDLVIVE
TSGIGQGDAR VVEIADVSLY VMTCEFGAPT QLEKIDMLDF ADLIALNKFE RKGAEDALRN
VRKQYRRNRN LFEAADEELP VFGTIAAQFN DPGTNVLYRA LMETLNTKTG SGFQSNLVIT
EKESLKQYII PPDRIHYLGE IVQTVRGYRK RVQEQAGVAR RLFQLQGAKE VVGDSPATGE
LERQIALHEA KLHEEPKKIL ADWPCLKETY RQDQLVTKVR DKEIRSDLYT TTLSGTRIPK
VCLPDFADYG EIVRWSMLEN VPGLFPYTAG VFPFKRAEED PKRQFAGEGS PERTNRRFHY
LCKDDDAKRL STAFDSVTLY GEDPDYPPDI YGKVGESGVS ICTVEDMQKL YAGFDLCAPN
TSVSITINGP APMMLAFFFN AAIEQQVAAF REKNGRAPSG AEYAEIRSCT LQTVRGTVQA
DILKEDQGQN TCIFSTEFAL RMMGDIQQYF IEQKVRNYYS VSISGYHIAE AGANPISQLA
FTLSNGFTYV EYYLSRGMKI DDFAPNLSYF FSNGLDPEYT VIGRVARRIW AVVMREKYGA
NDRSQKLKYH IQTSGRSLHA QEMDFNDIRT TLQALMAIYD NCNSLHTNAY DEAVTTPTEE
SVRRAMAIQM IITREFGLAK NENSCQGSFI IEELTDLVEE AVMCEFERID QRGGVLGAME
TQYQRSKIQD ESMLYEHKKH SGELPIIGVN CFLNPRACEE GYQVPGELAR ATKEEKEQQI
ANLRAFQERH RNEAPQALKR LQEVAVNGGN IFAELMETAK VASLGQISHA LYEVGGKYRR
NM