KEGG   Erwinia pyrifoliae DSM 12163: EPYR_00913
Entry
EPYR_00913        CDS       T02121                                 
Symbol
htrA
Name
(GenBank) serine endoprotease DO precursor
  KO
K04771  serine protease Do [EC:3.4.21.107]
Organism
epr  Erwinia pyrifoliae DSM 12163
Pathway
epr01503  Cationic antimicrobial peptide (CAMP) resistance
epr02020  Two-component system
Brite
KEGG Orthology (KO) [BR:epr00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   02020 Two-component system
    EPYR_00913 (htrA)
 09160 Human Diseases
  09175 Drug resistance: antimicrobial
   01503 Cationic antimicrobial peptide (CAMP) resistance
    EPYR_00913 (htrA)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01002 Peptidases and inhibitors [BR:epr01002]
    EPYR_00913 (htrA)
  09182 Protein families: genetic information processing
   03110 Chaperones and folding catalysts [BR:epr03110]
    EPYR_00913 (htrA)
Enzymes [BR:epr01000]
 3. Hydrolases
  3.4  Acting on peptide bonds (peptidases)
   3.4.21  Serine endopeptidases
    3.4.21.107  peptidase Do
     EPYR_00913 (htrA)
Peptidases and inhibitors [BR:epr01002]
 Serine peptidases
  Family S1: chymotrypsin family
   EPYR_00913 (htrA)
Chaperones and folding catalysts [BR:epr03110]
 Other chaperones and cochaperones
  DegP / HtrA
   EPYR_00913 (htrA)
SSDB
Motif
Pfam: Trypsin_2 PDZ Trypsin PDZ_6 PDZ_2 PDZ_1 DUF6288 Peptidase_S46 Tudor_2
Other DBs
NCBI-ProteinID: CAY73293
Position
997981..999429
AA seq 482 aa
MKKNTLVLSALAFSLGLALNPLAASAAETASSSSTSSQQLPSLAPMLETVMPSVVSINVE
GTTPRRAQQSQQFQQFQQFFGGNSPFCQEGSPFLGSPLCQGGAPGGNGIDGQQQKFQALG
SGVVIDAVKGYVVTNNHVVDNATKIQVQLSDGRKYDAKVIGKDPRSDIALIQLKEAKNLT
AIKIADSDNLRVGDYTVAIGNPYGLGETVTSGIVSALGRSGLNVENYENFIQTDAAINRG
NSGGALVNLNGELVGINTAILAPDGGNIGIGFAIPSNMVKNLSAQMVEYGQVRRGELGII
GTELNSELAKAMKVDAQRGAFVSQVLPKSSAAQAGIQAGDVIVSINNKPISSFAALRAQV
GSLPVGTKMELGLIRDGKPITVNLALQQGSAAKVDSATIYTGIEGADLSNYDVKGVKGVK
VDNLKAGSAAARIGLKKDDVILGVNQHTVTNLGELRKILDSKPSVLALSIQRGDSSIYLL
MQ
NT seq 1449 nt   +upstreamnt  +downstreamnt
atgaaaaagaatacgttagttctgagtgcactggcttttagcctgggtctggcgttaaac
cccttagcggccagcgcggctgaaaccgcctcttcgtcctctacaagcagccaacaatta
cccagcctggcgccgatgctggaaacggtaatgccttcagtcgtcagcatcaacgtggag
ggtacgacaccgcgcagggcgcagcagtcccaacagtttcagcagttccagcagttcttt
ggtggcaattcaccgttctgccaggagggctctcccttccttggatcgccactgtgccag
ggtggcgcgcccggcggtaacggtattgatggccagcagcagaaattccaggcgcttggc
tccggcgtggtgattgacgcggtgaaaggttatgtggtcactaacaatcacgttgttgat
aatgcaacaaaaattcaggtgcagctgagcgatggtcgcaaatatgatgcgaaggtgatc
ggcaaagatccccgttccgatatcgcattgatccagctgaaagaagcgaagaatctgacc
gcgattaagatcgccgacagcgacaatctgcgcgtgggggattataccgtggctatcggt
aacccttatggtttgggcgaaaccgtgacttcagggattgtttctgccctggggcgtagc
ggtctgaacgtggaaaactacgaaaactttatccagactgacgccgcgattaaccgtggc
aactccggcggcgcgctggtcaatctcaacggtgaactggtcgggattaacaccgcgatt
ctggctccggacggcggcaatatcggtattggcttcgccattccatcgaacatggtgaaa
aacctgagcgctcagatggttgagtacgggcaggtcaggcgcggagagctgggcatcatc
ggcaccgagctgaactccgagctggcgaaagcgatgaaagtcgatgctcaacgcggcgca
tttgtcagtcaggtgttgccgaagtcttcggcggcacaggccggaattcaggcgggtgac
gttattgtttcgatcaataacaagccgatctccagctttgccgcgctgcgcgctcaggtg
ggttcgctgccggtaggcaccaaaatggagttgggcctgatccgcgacgggaagccgata
acggttaacctcgcgttgcaacagggcagcgcggcgaaagtggactccgccaccatttat
accggtattgaaggggctgacctcagtaattacgatgtcaaaggggtgaagggcgttaaa
gtcgacaatctgaaagcgggttctgctgcggcgcgtatcggtctgaagaaagatgatgtt
attctgggcgttaaccaacatacggtgactaacctgggtgaactgcgcaaaatcctcgac
agtaaaccgtcggtgctggcattgagtattcagcgtggtgacagctcgatctacctgctg
atgcagtaa

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