Gene Hoch_2715 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagHoch_2715 
Symbol 
ID8545102 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameHaliangium ochraceum DSM 14365 
KingdomBacteria 
Replicon accessionNC_013440 
Strand
Start bp3737534 
End bp3739123 
Gene Length1590 bp 
Protein Length529 aa 
Translation table11 
GC content69% 
IMG OID646387408 
Productpeptidase U62 modulator of DNA gyrase 
Protein accessionYP_003267137 
Protein GI262195928 
COG category[R] General function prediction only 
COG ID[COG0312] Predicted Zn-dependent proteases and their inactivated homologs 
TIGRFAM ID[TIGR01409] Tat (twin-arginine translocation) pathway signal sequence 


Plasmid Coverage information

Num covering plasmid clones10 
Plasmid unclonability p-value0.365732 
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones15 
Fosmid unclonability p-value0.215491 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGCACAGGC GAGATTTTCT CATCGGCACC GGCGCCGCCC TCACGCTCGG GGCGTGCGCG 
GGCAAAGCCG CCACCACCGC GGCCACTGCG CCGGCGTCGC CCGGCCTGGT GCCGGGCGCC
ACCCCCGACT CGGATCTGCG CGCGCTGGCC GACGTGGCCC TCGACGCCGC GCGCGCGGCC
GGCGCCAGCT ACGCCGACGT GCGCATCGCC GACTACCGCA ATCAGTCGGT GCGCACCCGC
GAGCAGCGCG TGCTCGACAT CGAGGACGCC AGCGACAGCG GCTTTGGCGT GCGCGTCATC
GTCGACGGCG CCTGGGGCTT TGCCGCCAGC GCCCGGGTCG AGCGCGAGGA GCTGGTGCGG
GTGGCGCAGC AGGCCGTGGC CATGGCCAAG CTCAGCGCCA AGCTGCGCCG CGAGCCGGTG
CAGCTCGCGC CCACTCAGGC TCACGTGGCG GTGTGGAACA CGCCCGTGCG CCGCGATCCC
TTCGACGTCT CGGTCGACGA AAAAGTCGCC AAGCAGCTCG AGATCAACGC CGCCGCGCTG
GGCGTCGCCG GCGTGAGTTT TTGCAGCTCG CGCATGGCCT TTGTGCGCGA GCACAAGCTG
TTCGCGTCCA CCGAGGGCTC GTACATCGAG CAGACCCTGC ACCGCTGCAA CCCCTCGTTC
ACGGTGACCT CGGTCGACCG CAAGCGCGGC AGCTTCAAGA CCCGCAACGC GTACACCGAC
CCGCAGGGCC TCGGCTACGA GTACATCGAA GAATATCCCT GGCTCGAGGA CGTGCGCCAG
GCCGGCGAGG ACGTGGTCGC CAAGCACACG GCGCCGTCGA TCGAGCCCGG GCTCTACGAC
CTCATCCTGC ACCCGACGCA CCTGTGGCTG ACCATCCACG AGTCGATCGG ACACCCGACC
GAACTCGACC GCGCGCTGGG CATGGAGGCC AACTACGCCG GCACCAGCTT CCTCACCGTG
GACAAGATGG GCAGCTTCCG CATCGGCAGC GAGATCGTCA ATTTCCGCGG CGAGAAGACC
CACCCGGGCT CGCTGGCGAC CTGCGGCTAC GACGACGACG GCGTGCAGAC CATGGAGTGG
CCCATGGTCG AGCGCGGCAT CTTTGTCGAT TACCAGACCA CGCGCGAGCA GGCCCATCTC
ATCGGCCACG AGCGCTCGCA CGGCACCGCC TACGCGCAGA GCTGGAAGGA CGTGCCCTTC
CAGCGCATGC CCAACATCAA CCTGGAGCCG GGCGAGCAGC CGCTCAGCCT CGACGCGCTG
ATCGCCGACA CCGAGCGCGC CATCCTCATC AAGGGCCGCG GCAGCTACAG CATCGACCAC
CAGCGCTACA ACTTTCAGTT CGGCGGGCAG GCCTTCTACC TGGTCGAGAA CGGCGCCATC
ACCGGCCTGG TCGAGGACGT CGCCTACCAG TCGCGCACGC CCGATTTCTG GGGCGCCTGC
GACGCCATCT GCAGCCAGGA CGAGTACTAC GTCGGCGGCT CGTTCTACGA CGGCAAGGGC
GAACCCGGCC AGGCCAACGC CGTGAGCCAC GGCTGCGCGC CGGCTCGCTT CCGCCAGATC
AACGTCATCA ATACCGCGCG CACGGTGTGA
 
Protein sequence
MHRRDFLIGT GAALTLGACA GKAATTAATA PASPGLVPGA TPDSDLRALA DVALDAARAA 
GASYADVRIA DYRNQSVRTR EQRVLDIEDA SDSGFGVRVI VDGAWGFAAS ARVEREELVR
VAQQAVAMAK LSAKLRREPV QLAPTQAHVA VWNTPVRRDP FDVSVDEKVA KQLEINAAAL
GVAGVSFCSS RMAFVREHKL FASTEGSYIE QTLHRCNPSF TVTSVDRKRG SFKTRNAYTD
PQGLGYEYIE EYPWLEDVRQ AGEDVVAKHT APSIEPGLYD LILHPTHLWL TIHESIGHPT
ELDRALGMEA NYAGTSFLTV DKMGSFRIGS EIVNFRGEKT HPGSLATCGY DDDGVQTMEW
PMVERGIFVD YQTTREQAHL IGHERSHGTA YAQSWKDVPF QRMPNINLEP GEQPLSLDAL
IADTERAILI KGRGSYSIDH QRYNFQFGGQ AFYLVENGAI TGLVEDVAYQ SRTPDFWGAC
DAICSQDEYY VGGSFYDGKG EPGQANAVSH GCAPARFRQI NVINTARTV