Candida orthopsilosis: CORT_0B11520
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Entry
CORT_0B11520 CDS
T02488
Name
(RefSeq) Cis2 protein
KO
K00681
gamma-glutamyltranspeptidase / glutathione hydrolase [EC:
2.3.2.2
3.4.19.13
]
Organism
cot
Candida orthopsilosis
Pathway
cot00430
Taurine and hypotaurine metabolism
cot00460
Cyanoamino acid metabolism
cot00480
Glutathione metabolism
cot01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
cot00001
]
09100 Metabolism
09106 Metabolism of other amino acids
00430 Taurine and hypotaurine metabolism
CORT_0B11520
00460 Cyanoamino acid metabolism
CORT_0B11520
00480 Glutathione metabolism
CORT_0B11520
09180 Brite Hierarchies
09181 Protein families: metabolism
01002 Peptidases and inhibitors [BR:
cot01002
]
CORT_0B11520
Enzymes [BR:
cot01000
]
2. Transferases
2.3 Acyltransferases
2.3.2 Aminoacyltransferases
2.3.2.2 gamma-glutamyltransferase
CORT_0B11520
3. Hydrolases
3.4 Acting on peptide bonds (peptidases)
3.4.19 Omega peptidases
3.4.19.13 glutathione gamma-glutamate hydrolase
CORT_0B11520
Peptidases and inhibitors [BR:
cot01002
]
Threonine peptidases
Family T3: gamma-glutamyltransferase family
CORT_0B11520
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
G_glu_transpept
Motif
Other DBs
NCBI-GeneID:
14538880
NCBI-ProteinID:
XP_003868285
UniProt:
H8X2C9
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Position
2:complement(2419504..2421372)
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AA seq
622 aa
AA seq
DB search
MKGKSSNIRRTRYGLLLLPALLLISLTSIKLPVNHSWPEFPVDIVRADPYLTIQKATDDP
LLDKIGQPDLHPSKQHLHEGSKAMVASDVPVCSTMGKAILLKGGNAADAAVTVALCIGSI
NAHSSGIGGGGFILSRNVDKGDVISIDAREMAPSLASKNMFGKSFVLSKIGGLAIAIPGE
LKGLDELYKQHGSGRLSWKQLFDPVIQLNERGWNCSKVFETVVAKEDELVLSRVPVLKKM
WDFIFTESGKLVKEGDFIQRKNYARTLRLIANNGSSDIFYDPEGPIVPSLVDTIAEWGGI
ITPQDFSNYKVNVEEPLTSYIYGRTLYTSNGISSGISLIAGLNFFHAVYNGSDDAVSFNH
KLIESFKWSSSVRTRLGDISDRQKVLEKYCGDGWINEVLEQDKFSENETFPWSNYDPKYD
MVDPQGTSHFSIVDEDDNSVAMTTTVNLLFGSMIYDKNTGIVLNDQMDDFSQPNVSNAFN
LTPSIYNFVQPGKRPLSSTSPTIITYNNKSDLVIGAAGGSRITNTILQAIVRMYYRNTGL
LETIAYPRMHHQLIPEDVMSENITTFAEEFKGHGIVHKLEAKRHTFLETGALTAMNGIKR
ITDGTLQGVSDYWRKRGEADGY
NT seq
1869 nt
NT seq
+upstream
nt +downstream
nt
atgaaaggaaaatctagcaatatcagacgtacaaggtatggattgctactccttcctgct
ttgttattgatatcattgacatctatcaagctaccagtcaaccacctgtggccagaattt
ccagttgatatagttcgagctgatccatatctcaccatccagaaagccacggatgaccca
ctacttgataaaattggccagccggatttacacccttcgaagcagcacttacacgaaggt
agtaaagcaatggttgcaagtgacgttcccgtatgctctactatgggtaaggccatctta
ttgaagggaggcaacgctgccgacgctgcagttacagttgctttgtgcattggatctata
aacgcacatagttcaggaattggcggaggtgggtttattttaagtaggaatgtggacaaa
ggggacgtcatcagcatagatgctagagaaatggcaccatcattggcatcaaagaatatg
ttcggaaaatcatttgtattgagtaaaatcggtggtcttgctattgcaattcccggggag
ctcaagggactagacgagctttacaaacagcatggaagtggtcgtctatcatggaagcag
ttgtttgatccagtaatccagttgaatgagagaggatggaattgttcaaaagtttttgaa
actgtagttgcaaaggaagacgagttggtgttatcacgagtaccagttttgaagaaaatg
tgggattttatattcactgagagtggcaagctcgttaaagagggtgattttatccaacgt
aagaattacgcaaggacattgagattgattgccaacaatggaagtagcgatatcttttac
gatccagagggtccaattgttccatctttagttgatacaattgctgaatggggtggtatt
atcacaccacaggacttttccaactacaaagtaaatgttgaagagccgttgacttcatac
atctacggtcgtaccctttacactagcaatgggatttcatcggggatttctctaattgct
ggcttgaactttttccacgctgtttacaatggatcagacgatgcggtttcgttcaaccat
aaattaattgaaagtttcaaatggtccagttcagttcgaactcgtttaggcgatatatcg
gatagacaaaaggtgttggagaagtattgtggtgatggatggatcaatgaagtcttggaa
caggataaattttccgaaaatgaaacatttccatggagcaattacgatccaaaatatgat
atggttgatcctcaaggtacttcacacttttcaattgttgatgaagacgacaattcagtt
gcaatgaccacaacagtgaacttgctctttggatcaatgatctatgacaaaaacacggga
atagttcttaacgatcaaatggatgatttcagtcaaccaaacgtgagcaatgcatttaat
ttaaccccatctatatacaattttgtccaacctggaaagaggccattaagctcaacatca
ccaaccatcataacctataataacaaaagtgatttagttatcggtgcagccggtggtagc
agaatcacgaatacaattcttcaagcaatcgtgagaatgtattatagaaacaccgggtta
ctcgagactattgcttaccctagaatgcatcaccagttgatacctgaagatgtaatgagt
gaaaatattaccacatttgcagaagaattcaagggacatggtattgtacataagttggag
gccaaaaggcatacattcttggagactggggcattgacagcaatgaacggaataaaaagg
ataacggatggcacattgcaaggtgttagtgactactggagaaaacgtggagaggccgat
ggatattga
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