Gene Mrad2831_2409 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagMrad2831_2409 
Symbol 
ID6138448 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameMethylobacterium radiotolerans JCM 2831 
KingdomBacteria 
Replicon accessionNC_010505 
Strand
Start bp2568007 
End bp2569776 
Gene Length1770 bp 
Protein Length589 aa 
Translation table11 
GC content68% 
IMG OID641628125 
Productmethanol/ethanol family PQQ-dependent dehydrogenase 
Protein accessionYP_001755087 
Protein GI170748827 
COG category[G] Carbohydrate transport and metabolism 
COG ID[COG4993] Glucose dehydrogenase 
TIGRFAM ID[TIGR01409] Tat (twin-arginine translocation) pathway signal sequence
[TIGR03075] PQQ-dependent dehydrogenase, methanol/ethanol family 


Plasmid Coverage information

Num covering plasmid clones
Plasmid unclonability p-value0.13814 
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones25 
Fosmid unclonability p-value0.848808 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGAGAATGC GGACCCGGTT CCTCGCCGCG GTGGGCGTCG CCGCCCTCGT GGCGGGCGGC 
GCCCTGCCGG CCATGGCCCA GGGGGTGACC GAGCAGGACA TCATCAACGA CGCCAAGACC
CCCGGCGACG TCGTCACCTA CGGGCTCGGG CCGCAGGCCC AGCGCTTCAG CCCGCTGAAG
ACCCTCAACC GCGACAACAT CAAGGGCCTC GTCCCGGCGT GGTCGTTCTC GTTCGGCGGC
GAGAAGCAGC GCGGCCAGGA GAGCCAGGCG CTGGTCAAGG ACGGGATCAT CTACGTCACG
GGCTCGTACT CGCGCATGTA CGCGATCGAT TCCCGCACCG GCGACAAGAA GTGGGAGTAC
GACGCCCGCC TGCCGGAAGG GATCCTGCCC TGCTGCGACG TGGTGAACCG CGGCGCCGCG
CTCTACAAGG ACAACGTCTA CTTCGGCACG CTCGACGCCA AGCTGGTCGC GCTGAACACC
AAGACCGGCA AGGTCGTCTG GCGCAAGGAC ATCGACGACT TCAAGGCCGG CTACAGCTAC
ACGGCCGCCC CGATCATCGT GAAGGGCAAG ATCATCACCG GCGTGTCGGG CGGCGAGTTC
GGCGTGATCG GGCGGATCGA GGCCCGCGAC GCCGAGACCG GCGAGATCGT GTGGAAGCGG
CCCGTGATCG AGGGCCACAT GGGCGAGCTC AACGGCAAGC CCTCGACCAT GACGGGCAAG
GTCAACGAGA CCTGGCCCGG CGACATGTGG AAGTTCGGCG GCGGCGCCAC GTGGCTCGGC
GGCACCTACG ACCCCGAGAC CAACCTCGTC TATTTCGGCA CCGGCAACCC GGGCCCGTGG
AACTCCTGGC TGCGGCCGGG CGACAACAAG TGGACGTCCT CGCGCCTCGC CCTCAACCCC
GATAACGGCG AGATCGTCTG GGGCTTCCAG ACCACCCCGC ACGACGGCTG GGACTTCGAC
GGCGTCAACG AGTTCGTGCC GTTCGACCTG AACAAGGGCG GCAAGACCAT CAAGGCCGGC
GCCACCGCCG ACCGCAACGG CTTCTTCTAC GTCCTCGACC GGACCAACGG GAAGTTCATC
TCGGCGACGC CGTTCGTCGA GAAGATCAAC TGGGCCAAGG GCATCGACGA GAACGGCCGC
CCGATCTACA ACGAGGAGAA CCGGCCCGGC GACCCGAGCA AGGCGACCGG CGACGACAAG
AAGGGCAAGT CGGTCTTCGC GGTGCCGAGC TTCCTCGGCG GCAAGAACTG GATGCCGATC
GGCTACAGCC CCGACACCAA GCTGTTCTAC GTGCCCTCCA ACGAGTGGGG CATGGATATC
TGGAACGAGC CGGTGAACTA CAAGAAGGGC GCCGCCTATC TCGGCGCCGG CTTCACCATC
AAGCCGGTCT TCGACGACCA TATCGGCTCG CTCAAGGCGA TCGACCCGAC CTCCGGCAAG
GTCGTGTGGG AGTACAAGAA CAAGGCCCCG CTCTGGGCCG GCGTGCTGAC CACCGCGGGC
AACCTCGTCT TCACCGGCAC CCCGGAGGGC TTCCTGAAGG CCTTCGACGC CAAGACCGGC
GAGGAGGTCT GGAAGTTCCA GGTCGGCACC GGCGTGGTCT CCTCGCCGAT CACCTGGGAG
CAGGACGGCG AGCAGTGGGT CGGCGTCGCG GCGGGCTGGG GCGGCGCGGT GCCGCTCTGG
GGCGGCGAGG TCGCCAAGTC CACCGCCGGC ATCAACCAGG GCGGCAGCTT CTGGGCGTTC
AAGCTGCCGA AGACGGTGGC GTCGCGCTGA
 
Protein sequence
MRMRTRFLAA VGVAALVAGG ALPAMAQGVT EQDIINDAKT PGDVVTYGLG PQAQRFSPLK 
TLNRDNIKGL VPAWSFSFGG EKQRGQESQA LVKDGIIYVT GSYSRMYAID SRTGDKKWEY
DARLPEGILP CCDVVNRGAA LYKDNVYFGT LDAKLVALNT KTGKVVWRKD IDDFKAGYSY
TAAPIIVKGK IITGVSGGEF GVIGRIEARD AETGEIVWKR PVIEGHMGEL NGKPSTMTGK
VNETWPGDMW KFGGGATWLG GTYDPETNLV YFGTGNPGPW NSWLRPGDNK WTSSRLALNP
DNGEIVWGFQ TTPHDGWDFD GVNEFVPFDL NKGGKTIKAG ATADRNGFFY VLDRTNGKFI
SATPFVEKIN WAKGIDENGR PIYNEENRPG DPSKATGDDK KGKSVFAVPS FLGGKNWMPI
GYSPDTKLFY VPSNEWGMDI WNEPVNYKKG AAYLGAGFTI KPVFDDHIGS LKAIDPTSGK
VVWEYKNKAP LWAGVLTTAG NLVFTGTPEG FLKAFDAKTG EEVWKFQVGT GVVSSPITWE
QDGEQWVGVA AGWGGAVPLW GGEVAKSTAG INQGGSFWAF KLPKTVASR