Gene Shew185_2615 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagShew185_2615 
Symbol 
ID5373740 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameShewanella baltica OS185 
KingdomBacteria 
Replicon accessionNC_009665 
Strand
Start bp3120785 
End bp3124198 
Gene Length3414 bp 
Protein Length1137 aa 
Translation table11 
GC content49% 
IMG OID640830839 
ProductDNA polymerase III, subunits gamma and tau 
Protein accessionYP_001366813 
Protein GI153001132 
COG category[L] Replication, recombination and repair 
COG ID[COG2812] DNA polymerase III, gamma/tau subunits 
TIGRFAM ID[TIGR00678] DNA polymerase III, delta' subunit
[TIGR02397] DNA polymerase III, subunit gamma and tau 


Plasmid Coverage information

Num covering plasmid clones
Plasmid unclonability p-value0.00000443473 
Plasmid hitchhikingNo 
Plasmid clonabilityunclonable 
 

Fosmid Coverage information

Num covering fosmid clonesn/a 
Fosmid unclonability p-valuen/a 
Fosmid Hitchhikern/a 
Fosmid clonabilityn/a 
 

Sequence

Gene sequence
ATGTCAAATC ATGACATGTT ATCTTTCAAA GTTCTCGGGG CGCATGCTCC CGCTCTTGTA 
TCACATACTC TGGGGAGTTC CATGTCATAT CAGGTGTTAG CCAGAAAATG GCGCCCTGCC
ACATTTGATC AAATGGTTGG CCAAAGCCAT GTTTTGCATG CCTTGACCAA TGCGTTAAGC
CAGCAGCGCT TACATCATGC ATACCTGTTT ACGGGAACGC GCGGTGTCGG TAAAACCAGC
TTGGCGCGAC TCTTTGCCAA AGGCTTAAAT TGCGAACAAG GCGTGACAGC GACTCCCTGT
GGTGTTTGCG GCAGCTGCGT GGAAATCGCG CAAGGTCGTT TTGTCGATTT AATTGAAGTC
GATGCCGCGT CCCGCACTAA GGTCGATGAC ACCCGTGAGC TGTTAGACAA TGTGCAGTAT
CGTCCAACCC GTGGCCGTTT TAAGGTTTAT CTCATCGACG AAGTGCATAT GCTGTCGCGC
AGCAGTTTTA ACGCACTGCT AAAAACCTTA GAAGAACCCC CCGAGCACGT TAAATTTCTT
TTGGCGACAA CTGATCCACA GAAACTGCCC GTGACTGTGT TATCCCGTTG TTTGCAATTC
AATTTAAAAA GCCTTACCCA AAGCGAAATT GGCACTCAGC TCAATCATAT TTTGACCCAA
GAGCAGTTTC CCTTTGAGGC TGAAGCCTTA AAGCTTCTTG CCAAAGCCGC CAATGGCAGT
ATGCGTGATG CCTTGAGTTT GACCGATCAA GCGATCGCCT TTGGTGGCGG TAGTGTGATG
CTCACTCAAG TGCAAACTAT GCTTGGCAGT ATTGATGAGC AGCATGTGGT TGCCTTGCTT
AAAGCCTTAA CCGATGCCGA TATTGGCGTG TTAATGCACA CCTGTGCCCA AGTGCTGGCG
TACGGCGCCG ATGCCCAAGA AGTGCTGCGC AGTTTGCTTG AGCTGTTACA TCAAATTACT
TTGACTCAAT TTGCCCCAGT TTGCGCGCAG CAATCTTTAT ATAGCGCGCA AATTCGCGCC
TTTGCTGAGC AGCTGACGCC GGAGCAAGTG CAGCTTTATT ATCAGATTTT ATTAACGGGC
CGCAAAGATT TACCCCATGC ACCAGATCCT AAATCGGGTC TTGAGATGGC GCTGTTACGG
GCTGTTGCCT TTGTGCCAGA AAAGCCGGTA AAGCGCTGGC AGCCTGATGC GGTCGCTGAG
ATCCGTTTAC CCGAAGGGCA AACGCCCGTT GCGGCAACTG CTGCAGCGCA AGCTCCTCAT
GTAAATGAAC CACAGTTTGC TGAAACACAT ACAGCTGAAC CGCATACCAC TCAAACAGTG
CCTGCTGAAA AAAAAACAGC ATTAATTGAG CAAACTTGCG CTAACCAGCA AGTTGAAACC
GCGCAAGCGG CCGCTGTTGA CATGGCTGAC GTGTCAATTG AGCCAGCAGA TACTGTAGAG
CAGGCGCTTG ATGCTGAGCT CGAAGCGGAT GCGGCATTAA TTGCCGAACA GGCGGTGATT
CTAAGTCAGG CGCAGAGTCA GGGATTTAAC GCTGACAGCT TAAACGCTTA CACAGTTAAT
GCTGAGGTAG AGCCTCAAAC TCAAACAGTA TCAACCGCTC AAGCGCCTTC TATACACATT
TCTGAACCCG TTGCTGACAT TGAAGCATCG GTTGCCAGTC TTGATGCTCA TAATAGTGAA
GTTCCTGAAT TAATTGGGGC AACTGCCGAG TCGAGTATTG TTAATCCAGC TATGGCTGAA
ACGGTTGTTG GTTCAACATC TGCTGATAAC AACAGCGCAG CTGAGAACAC ACTGGATAAC
AATCCCACCG CTAACAACAC GCTTGAGCAA AATGGGCTTG ATGAACATAG TCCCTATGGA
ACTGAAGCCG AGCATTCATA TCCAGCGATG GGAGATTATG CCCAAGAGTC AGCGCCGCTC
GATTCCTATC AAGATGCTTA TGTTGAATTC TCTTCCGGCT CTTACAATGA TGACGATTTT
CATCACGGCT TTGAGTCTCA TGCTGTGCCT GATGATGTTC AACACTCAGC TAATGTTCAA
CACTCAGATA GTGTTCAACA TTCTGCTGAT GTTCAAAGCG CAGCAAGTAT TCAAAGTGCT
TTAGGCATGC AAGGCTCTGT TGATAGTCAG TCAGCTGCAA TGGCTCAAGT GTCTCCTCAG
ACACTAACTC CAATTTCAAT TCCAACACTA GCCTCCGCAT CCTTAGCCGA TGATGATATT
CTCTCGGCTG TGTTGGCTGC GCGAGATTCA CTGTTATCGG ATCTCGACGC CTTAAGTGTT
AAGGACGGTG ATGAAAAAAA GTCGTCACTG GACTCAAAGT TAAAGACACC AAACAGTAAA
GCCAATGGGA TCAGTTTATC AAAACCTGCC AGTAAAAGTG ATGCAAGTAA GACAAGTGCG
TCATTCTCTG CCGATCCCGC CGCTGATTTA GATCCCGATT TAACAATAGA TTTCGATGAT
GATTTTGACT TAGATCTTGA GCCAATTGCT CTGCATCAAT CAGTGCCTTC GGCTGCAAGC
GCATCAGGTT CTGTCCCTGC TGAACCAGTC AAACCGGCAA CATATGATCG TCCACCTTGG
GAGGCTGCGC CAGAAGTAGC GTCCACAGCT GAGCTTATCG AAACGACTCA GGTTGATAGC
GGCAATACTA ATATCGCTGA TGCTGTGATG GCTCAAGGCT CTGATATAAA TGATGACTCT
GCCAGCAGTT GCCAAGGATC TTTAGAGACT AGCAACACTG CCAATGACGG ACAGAATAAT
GCGGCATATG GCAATGACTC CCGGAGTGCT GAGCAGGATT CAGGTTCGAA GTCACAAGCG
CTTCAAACTC AAGCAAGGCA TCAAGATAAA GTGCAAGCTA CCGCATTAAC GCCGGCTAGC
ACGACTGCAC TGACTCAGAC GGCTAGCGCT GTTGAGCGCA CGCAGGAGAG GGAAGTCGCG
CTTAGTACAC TTCCGATCAG CGGTCATCCA TTAGATTTGC ATTGGTACAA GTTGATGGCG
AGCTTAGAGA TCGGCGGGCG AGTACGGCAA CTGGCGGTTA ATTCCGTTTG CCAAACCCAG
AGCGATCCTT TGCCGCTGCT GCTTAAGCCA AATCAGAAAC ATCTTGCGGC CGATGTCGCC
ATAGTACAGC TTGAGCAAGC CTTAAGTGCT GCGCTTGGGA ACCCAAGACG GGTACAAGTG
GTCATAGGAA TCGATGCGCA GCGGGAAACG CCTTTAGAGT TACGTAAACG TTTCCACCAA
GAGTTGCTGC AACAGGCGCA TCAATCACTG ATCCATGATG ACAATGTGCA ATGGTTGATC
CAACGTATGG GCGCCGAACT CGATGCCGAC AGTTTAGTGT ATCCGCCCGA GTTGTTGAAT
TTACGCAGTC AGCAAATACA AGCGTTACCT GAGTTAACTG AGGCGGCGAG TTAA
 
Protein sequence
MSNHDMLSFK VLGAHAPALV SHTLGSSMSY QVLARKWRPA TFDQMVGQSH VLHALTNALS 
QQRLHHAYLF TGTRGVGKTS LARLFAKGLN CEQGVTATPC GVCGSCVEIA QGRFVDLIEV
DAASRTKVDD TRELLDNVQY RPTRGRFKVY LIDEVHMLSR SSFNALLKTL EEPPEHVKFL
LATTDPQKLP VTVLSRCLQF NLKSLTQSEI GTQLNHILTQ EQFPFEAEAL KLLAKAANGS
MRDALSLTDQ AIAFGGGSVM LTQVQTMLGS IDEQHVVALL KALTDADIGV LMHTCAQVLA
YGADAQEVLR SLLELLHQIT LTQFAPVCAQ QSLYSAQIRA FAEQLTPEQV QLYYQILLTG
RKDLPHAPDP KSGLEMALLR AVAFVPEKPV KRWQPDAVAE IRLPEGQTPV AATAAAQAPH
VNEPQFAETH TAEPHTTQTV PAEKKTALIE QTCANQQVET AQAAAVDMAD VSIEPADTVE
QALDAELEAD AALIAEQAVI LSQAQSQGFN ADSLNAYTVN AEVEPQTQTV STAQAPSIHI
SEPVADIEAS VASLDAHNSE VPELIGATAE SSIVNPAMAE TVVGSTSADN NSAAENTLDN
NPTANNTLEQ NGLDEHSPYG TEAEHSYPAM GDYAQESAPL DSYQDAYVEF SSGSYNDDDF
HHGFESHAVP DDVQHSANVQ HSDSVQHSAD VQSAASIQSA LGMQGSVDSQ SAAMAQVSPQ
TLTPISIPTL ASASLADDDI LSAVLAARDS LLSDLDALSV KDGDEKKSSL DSKLKTPNSK
ANGISLSKPA SKSDASKTSA SFSADPAADL DPDLTIDFDD DFDLDLEPIA LHQSVPSAAS
ASGSVPAEPV KPATYDRPPW EAAPEVASTA ELIETTQVDS GNTNIADAVM AQGSDINDDS
ASSCQGSLET SNTANDGQNN AAYGNDSRSA EQDSGSKSQA LQTQARHQDK VQATALTPAS
TTALTQTASA VERTQEREVA LSTLPISGHP LDLHWYKLMA SLEIGGRVRQ LAVNSVCQTQ
SDPLPLLLKP NQKHLAADVA IVQLEQALSA ALGNPRRVQV VIGIDAQRET PLELRKRFHQ
ELLQQAHQSL IHDDNVQWLI QRMGAELDAD SLVYPPELLN LRSQQIQALP ELTEAAS