Entry
Name
(RefSeq) proline dehydrogenase
KO
Organism
tet Tetrahymena thermophila
Pathway
tet00330 Arginine and proline metabolism
tet01110 Biosynthesis of secondary metabolites
Module
tet_M00970 Proline degradation, proline => glutamate
Brite
KEGG Orthology (KO) [BR:tet00001 ]
09100 Metabolism
09105 Amino acid metabolism
00330 Arginine and proline metabolism
TTHERM_00295390
Enzymes [BR:tet01000 ]
1. Oxidoreductases
1.5 Acting on the CH-NH group of donors
1.5.5 With a quinone or similar compound as acceptor
1.5.5.2 proline dehydrogenase
TTHERM_00295390
BRITE hierarchy
SSDB
Ortholog Paralog GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
AA seq
570 aa AA seq DB search
MILNNLNRLARCSLAARRSQNIFQIANLSSTQQLSYKGKFFQSTKAPESAQQDAKQEDRS
TISVKPTQSQPSESSPRPEQQKFVSDEELEYFKSLRIYKEKTALELVNLFMINKLLHYSV
FVNNADRLYKISCKVLGHRITEIIIKNTMGRVFTGGSNIEEIMSFAKKLESRNVPVIVDY
CCEALEEDQNEFFMDKSVKVFEKTVNVGDNINRHKVSMKISGLINMEVLKKINIYGEEID
SLYEQIDKTKKGFITGQELHQALVAKGYHIEESDTQEFIKTVLEIQDGKSLQDTQIRQLI
WRIRVHPYYIQSEKNQLKISKYLTKLDQHEISKAENFLRRMELVFDAAFRNKTRVLVDAE
QSFIQRAIDSFLEQYQIKYNVEAPIVYTTFQNYLKSSSKRIAYEIAKCKELNIPFGVKMV
RGAYINEETRIAKEKGIENPICDGLDKTTEMIESNLKFLVDNLLPGSELLIGSHNKDTIV
KMKQYMKSKGIPNNSQQVYFSQLLGLADHLTYSLVDEGYSVYKYIPFGETHIMIPYLIRR
AQESFQVLSSVEFQYNLLKDEVKRRTPFYY
NT seq
1713 nt NT seq +upstream nt +downstream nt
atgatacttaacaacttaaataggttagctagatgctctttagctgcaagaagaagccaa
aatattttccaaattgccaatcttagctcaacatagtaattgagctataagggcaaattt
ttccaaagcaccaaagcaccagaatctgcataataagatgccaaataagaagatcgctca
actatttcagtaaaacccacttagtcttagcctagtgagagctcacctcgacccgagcaa
tagaaatttgtttcagatgaggagttagaatactttaaaagtcttagaatttacaaggaa
aaaaccgcccttgaattggttaatctttttatgatcaacaaattgcttcattattcagtt
tttgtcaataatgcagatcgcctttacaaaatatcttgcaaggttttgggtcatagaatt
actgaaattattattaaaaatacaatgggcagagtttttactggaggttcaaatatcgaa
gaaattatgagctttgctaaaaagcttgaaagcagaaatgttccagttattgttgattac
tgttgtgaagcacttgaagaagatcaaaatgaattcttcatggacaaaagtgttaaagta
tttgaaaaaacagttaatgttggcgataatattaacagacacaaagtttcaatgaaaatt
tctggtttaattaatatggaagttttgaaaaaaataaacatttatggagaagaaatcgat
agtttatatgaatagattgataaaactaaaaaaggtttcattactggctaagaattgcac
taagctttagttgcaaagggttatcacattgaagaaagcgatacttaggaatttatcaaa
acagttttagaaatttaagatggaaagtctctttaagatacttaaattagataattaatt
tggagaattagagttcatccttactacatttaatctgaaaagaattagcttaagatttct
aaatatttaacaaaactcgatcaacatgaaattagcaaggcagaaaactttttgagaaga
atggaacttgtttttgatgcagcttttagaaacaagactagagttttagttgatgctgaa
caatctttcatttagagagctattgatagtttcttggaataatattagattaaatacaac
gttgaagctcctattgtttacaccacattctaaaactacttaaagtctagctcaaaaaga
attgcttatgaaattgctaaatgcaaagaattaaacataccttttggagttaagatggtt
agaggtgcatacatcaatgaagaaactagaattgctaaagaaaaaggaattgaaaaccca
atttgtgatggtttagataaaacaactgaaatgattgaatctaatttaaagttccttgta
gataaccttttacctggatcagaacttcttattggaagtcataacaaagatacaattgta
aaaatgaaataatatatgaagtctaagggtattcccaataattcataacaagtctatttc
tcttaacttttaggattagcagaccatttaacttacagtcttgttgacgaaggatactcc
gtatataaatatataccttttggtgaaacccacatcatgattccctacttaataagaaga
gcttaggaatcattccaagtcttaagcagtgttgaattctaatacaacctgcttaaggat
gaagtaaaaagaagaactcctttttactattga