Gene Msil_2955 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagMsil_2955 
Symbol 
ID7093448 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameMethylocella silvestris BL2 
KingdomBacteria 
Replicon accessionNC_011666 
Strand
Start bp3260184 
End bp3262088 
Gene Length1905 bp 
Protein Length634 aa 
Translation table11 
GC content62% 
IMG OID643466264 
Productchaperone protein DnaK 
Protein accessionYP_002363228 
Protein GI217979081 
COG category[O] Posttranslational modification, protein turnover, chaperones 
COG ID[COG0443] Molecular chaperone 
TIGRFAM ID[TIGR02350] chaperone protein DnaK 


Plasmid Coverage information

Num covering plasmid clonesn/a 
Plasmid unclonability p-valuen/a 
Plasmid hitchhikingn/a 
Plasmid clonabilityn/a 
 

Fosmid Coverage information

Num covering fosmid clones51 
Fosmid unclonability p-value
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGGCGAAAG TAATCGGAAT CGACCTTGGC ACCACCAATT CCTGCGTGGC CGTCATGGAG 
GGAACGACTC CAAAAGTGAT CGAGAACGCG GAAGGCGCGC GCACGACGCC CTCGATCGTC
GCGTTTACCG ACGATGGCGA GCGCCTCGTC GGCCAGCCGG CCAAACGCCA GAGCGTCACC
AATCCGGAGC GGACCTTTTT CGCGATCAAG CGCCTGATCG GCCGCACCTA CGACGATCCC
ATGACGAAGA AGGACATGGG CCTCGTTCCT TACAAAATTA TTCGCGCCTC GAACGGCGAC
GCCTGGGTCG AGGCCGACGG CAAGCAATAT TCCCCCTCGC AGATTTCCGC CTTCATCCTG
CAAAAGATGA AAGAGACCGC CGAGGCCTAT CTCGGCCAGC CGGTGTCGCA GGCGGTGATC
ACCGTGCCGG CCTATTTCAA CGACGCCCAG CGCCAGGCGA CCAAGGACGC CGGCAAGATC
GCCGGGCTCG AGGTGCTGCG CATCATCAAT GAGCCGACCG CGGCCGCCCT CGCCTATGGC
CTCGACAAGA AAGGCGCCGG CGTCATCGCA GTTTACGATC TGGGCGGCGG CACCTTCGAC
GTGTCGATCC TCGAGATCGG CGACGGCGTG TTCGAAGTGA AGTCGACCAA TGGCGACACG
TTCCTCGGCG GCGAGGATTT CGATGTGCGC CTCGTCGAAT ATCTCGCCGA TGAATTCAAG
AAAGAGAACG GCATCGATCT GAAGAAGGAC AAGCTTGCCC TGCAGCGGCT GAAGGAAGCC
GCCGAAAAGG CCAAGATCGA ACTGTCTTCG GCGACGCAGA CCGAGATCAA CCTGCCCTAT
ATCACCGCCG ACGCGACCGG GCCGAAACAT CTCACCCTGA AACTCACCCG CGCCAAATTC
GAAGCGCTTG TCGACGATCT GATCCAGAAG ACCGTTGAGC CCTGCCGCAA GGCGCTGAAG
GACGCCGGCC TCACCGCTGG CGAAATCAAC GAAGTTGTCC TCGTCGGCGG CATGACCCGC
ATGCCGAAGG TTCAGGAAGT CGTGAAAAGC TTCTTCGGCA AGGAGCCGCA CAAAGGCGTC
AACCCGGATG AGGTCGTCGC CATCGGCGCG GCGGTTCAGG CCGGCGTGCT GCAGGGCGAC
GTTAAGGATG TGCTGCTGCT CGACGTGACG CCGCTCTCGC TCGGCATTGA AACGTTAGGC
GGCGTGTTCA CGCGCCTGAT TGACCGCAAC ACGACAATCC CGACCAAGAA GAGCCAGGTG
TTCTCGACGG CGGAGGACAA TCAGACGGCG GTCACGATCC GCGTCTTCCA GGGCGAGCGT
GAAATGGCGG CCGACAATAA GCTGCTCGGC CAGTTCGATC TCGTCGGCAT TCCGGGCGCG
CCGCGCGGCG TGCCGCAGAT CGAGGTCACC TTCGACATCG ACGCCAATGG CATCGTCAAT
GTGACGGCGA AGGACAAGGC GACCAACAAG GAGCAGCAGA TCCGCATCCA GGCGTCGGGC
GGCCTCAGCG AGGGCGATAT CGACAAGATG GTGAAGGACG CCGAGGTTCA CGCCGCAGAG
GACAAGAAGC GGCGCGAACT CGTCGACGCG CGCAATCAGG CCGAAGCGAT GGTCCATTCG
GCGGAGAAGT CGCTGACGGA ATTCGCCGGC AAGGTGTCGG ACGCCGACAA GAGCGCCCTC
GAGGCCGCAA TCGCCTCGGT GAAGGGCGTG CTCGAAGGCG AAGATGTCGA AGCGATCAAG
GCGCGCTCCA ATGATCTCGC GCAGGCTTCG ATGAAGCTTG GCGAGGCCAT GTACAAGGCA
GGCGCCGAGG CTGGCCCGCA GGAGGGCGGC GGCGCCGAGA AGGACGACGT CATCGACGCC
GACTTCAAGG AAGTCGGCCC CGACGACAAG AAGAAATCGG CCTGA
 
Protein sequence
MAKVIGIDLG TTNSCVAVME GTTPKVIENA EGARTTPSIV AFTDDGERLV GQPAKRQSVT 
NPERTFFAIK RLIGRTYDDP MTKKDMGLVP YKIIRASNGD AWVEADGKQY SPSQISAFIL
QKMKETAEAY LGQPVSQAVI TVPAYFNDAQ RQATKDAGKI AGLEVLRIIN EPTAAALAYG
LDKKGAGVIA VYDLGGGTFD VSILEIGDGV FEVKSTNGDT FLGGEDFDVR LVEYLADEFK
KENGIDLKKD KLALQRLKEA AEKAKIELSS ATQTEINLPY ITADATGPKH LTLKLTRAKF
EALVDDLIQK TVEPCRKALK DAGLTAGEIN EVVLVGGMTR MPKVQEVVKS FFGKEPHKGV
NPDEVVAIGA AVQAGVLQGD VKDVLLLDVT PLSLGIETLG GVFTRLIDRN TTIPTKKSQV
FSTAEDNQTA VTIRVFQGER EMAADNKLLG QFDLVGIPGA PRGVPQIEVT FDIDANGIVN
VTAKDKATNK EQQIRIQASG GLSEGDIDKM VKDAEVHAAE DKKRRELVDA RNQAEAMVHS
AEKSLTEFAG KVSDADKSAL EAAIASVKGV LEGEDVEAIK ARSNDLAQAS MKLGEAMYKA
GAEAGPQEGG GAEKDDVIDA DFKEVGPDDK KKSA