KEGG   Bordetella genomosp. 13: CAL15_20125
Entry
CAL15_20125       CDS       T05441                                 
Name
(GenBank) gamma-glutamyltransferase
  KO
K00681  gamma-glutamyltranspeptidase / glutathione hydrolase [EC:2.3.2.2 3.4.19.13]
Organism
bgm  Bordetella genomosp. 13
Pathway
bgm00430  Taurine and hypotaurine metabolism
bgm00460  Cyanoamino acid metabolism
bgm00480  Glutathione metabolism
bgm01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:bgm00001]
 09100 Metabolism
  09106 Metabolism of other amino acids
   00430 Taurine and hypotaurine metabolism
    CAL15_20125
   00460 Cyanoamino acid metabolism
    CAL15_20125
   00480 Glutathione metabolism
    CAL15_20125
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01002 Peptidases and inhibitors [BR:bgm01002]
    CAL15_20125
Enzymes [BR:bgm01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.2  Aminoacyltransferases
    2.3.2.2  gamma-glutamyltransferase
     CAL15_20125
 3. Hydrolases
  3.4  Acting on peptide bonds (peptidases)
   3.4.19  Omega peptidases
    3.4.19.13  glutathione gamma-glutamate hydrolase
     CAL15_20125
Peptidases and inhibitors [BR:bgm01002]
 Threonine peptidases
  Family T3: gamma-glutamyltransferase family
   CAL15_20125
SSDB
Motif
Pfam: G_glu_transpept Myo1_CA
Other DBs
NCBI-ProteinID: ARP97564
UniProt: A0A1W6ZL94
LinkDB
Position
4478706..4480286
AA seq 526 aa
MTFDWSNPYPSSRAPVFARNLVATSQPLAAQAGLRMLALGGNAVDAAIAAAAALAVTEPV
GNGLGSDCYVLVWDGARLHGLDASGTAPAAWNPGYFKARHQGRIPPRGWDSVTVPGAIAG
WAHLHERLGSLSFATLLEPAIEYAERGYAITPAVQRKWEAQVDLLQSMPGFADHFMPRGR
APLVGEHFTLRCAAETLRRVADTTGRDFYEGETAHKLVAHAQAHEAALTLNDLRGYAPRW
VEPIAQPYHGHMLHQLPSENHAHGMATLVAAGILQHFDLAAHAADHPDAQHLMIEAVKLA
LAETPREAATLLDPDRLAKCARAIDPRRAQPFSFGRAPQGGTVQVSAADRNGMMVSLVQS
NHIGFGSGVVVPGTGVSLHNRGYAFSADASHPNAVAGGRRPGHASTPLLLTRAGAPQASF
GVMGGNMQPQGHVQTLVRMVDHGQQPQAACDAPRWRWTHGMSVDAEPSMSTGLIDALRAR
GHAVERTRDPHADFGSGQFVWRLGDPAVQGYVGASDGRRDGLAAGL
NT seq 1581 nt   +upstreamnt  +downstreamnt
atgacgttcgactggagcaacccctatccttcatcgcgggctcctgtatttgcccgcaac
ctggtcgccacctcgcaaccgctggcggcgcaggccggccttcgcatgctggccctgggc
ggcaatgccgtggacgccgccatcgcggcggccgccgcactggccgttaccgagcccgtg
ggcaacggcctgggttcggactgctacgtgctggtgtgggacggcgcgcggctgcatgga
ctggacgcctcgggcacggcgccggccgcatggaatcccggctacttcaaggcgcggcac
cagggccgcattccgccgcgcggatgggacagcgtgaccgtgcccggcgcgatcgccgga
tgggcgcacctgcacgagcgcctgggcagcctgtctttcgccacgttgctcgagccggcc
atcgagtatgccgaacgcggctatgcgatcacgccggcggtacagcgcaaatgggaagca
caggtggacctgctgcaatccatgcccggattcgccgaccacttcatgcccaggggacgc
gcgccgctggtgggggaacacttcacgctgcgctgcgcggccgagaccctgcgccgcgtg
gccgacaccaccggccgcgatttctatgaaggcgagacggcgcacaagctggtggcccac
gcccaggcccacgaagccgccctgacgctgaacgacctgcggggctatgcgccgcgctgg
gtcgagcccatcgcccagccgtatcacgggcacatgctgcatcagctgccatccgagaat
catgcgcacggcatggcgaccctggtcgcggcgggcatcctgcagcatttcgatctggcg
gcccatgcggcggaccacccggacgcgcagcacctgatgatcgaagccgtgaagctggcg
ctggccgagacgccgcgcgaggccgccacgctgctcgatccggacaggctggccaagtgc
gcacgcgccatcgatccgcgacgcgcgcagcccttctccttcggcagggcgccgcaaggc
ggcacggtgcaggtcagcgcggccgaccgcaacggcatgatggtcagcctggtgcagtcc
aaccacatcggcttcggctcgggcgtggtcgtgccgggcacgggcgtcagcctgcacaac
aggggctacgccttctcggccgatgcctcgcatcccaacgccgtggcgggcggcaggcgg
ccggggcatgccagcacgccgctgctgctgactcgcgccggggcgccgcaggccagcttc
ggtgtgatgggcggcaacatgcagccgcaaggccacgtgcagacgctggtgcgcatggta
gaccacggccagcagccgcaggcggcctgcgatgcgcctcgctggcgttggacgcacggc
atgtcggtggacgcagagccttcgatgtcgacgggcctcatcgacgcgctgcgcgcgcgt
ggccacgcggtcgaacgcactcgcgatccgcacgccgacttcggctcggggcagttcgtg
tggcgcctgggcgatccggcggtgcaaggctatgtgggcgccagtgacggccgccgcgac
ggcctggccgccggactgtga

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