Raineyella fluvialis: Rai3103_12100
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Entry
Rai3103_12100 CDS
T06259
Name
(GenBank) aldehyde dehydrogenase family protein
KO
K00135
succinate-semialdehyde dehydrogenase / glutarate-semialdehyde dehydrogenase [EC:
1.2.1.16
1.2.1.79
1.2.1.20
]
Organism
rain
Raineyella fluvialis
Pathway
rain00250
Alanine, aspartate and glutamate metabolism
rain00310
Lysine degradation
rain00350
Tyrosine metabolism
rain00650
Butanoate metabolism
rain00760
Nicotinate and nicotinamide metabolism
rain01100
Metabolic pathways
rain01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
rain00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00650 Butanoate metabolism
Rai3103_12100
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
Rai3103_12100
00310 Lysine degradation
Rai3103_12100
00350 Tyrosine metabolism
Rai3103_12100
09108 Metabolism of cofactors and vitamins
00760 Nicotinate and nicotinamide metabolism
Rai3103_12100
Enzymes [BR:
rain01000
]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.1 With NAD+ or NADP+ as acceptor
1.2.1.16 succinate-semialdehyde dehydrogenase [NAD(P)+]
Rai3103_12100
1.2.1.20 glutarate-semialdehyde dehydrogenase
Rai3103_12100
1.2.1.79 succinate-semialdehyde dehydrogenase (NADP+)
Rai3103_12100
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Motif
Pfam:
Aldedh
C2c1_helical_1st
Motif
Other DBs
NCBI-ProteinID:
QGF24281
UniProt:
A0A5Q2FD25
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Position
2653858..2655330
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AA seq
490 aa
AA seq
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MTAELQTQAPDFLGDVPTGLLINGQWRPAASGETLPVLDPATGAVLAEVAAADATDALEA
LAAASAAQPAWAAVAPRERAELLRAAYEAIIARAEEFAQCMTYEMGKPLAEARGEVTYGA
EFFRWFSEEACRVDGRWTTAPDGKTRLLTMKQPVGPTLMILPWNFPLAMGTRKIGPAIAA
GCTMVVKPAQQTPLTTLLLAKVLQEVGLPDGVLNVITTRRTGETMAPVIADRRLRKVTFT
GSTAVGTRLLEQCAPRVLRVSMELGGNAPFIVFEDADIDSAVRGAMLAKMRNTGEACTAA
NRFLVQDTVAEAFSAKLTAVMQEQRLGHGAAEGTQVGPLIDGRARDGVDALVQDAVAHGA
TLRTGGASVEGPGYFYEPTVLTDVPSDSRIAVEEIFGPVVAISTFATEEEAIRRANDTDY
GLASYVFTKDLGRAVRVSEALEYGMVGVNTGIVSNPAAPFGGVKLSGLGREGSHEGIEEY
LETKYVGLAT
NT seq
1473 nt
NT seq
+upstream
nt +downstream
nt
atgaccgctgagctccagacccaggccccggacttcctcggcgacgtccccaccggccta
ctgataaacggccagtggcggcccgccgcctccggggagaccctgcccgtgctggacccg
gccaccggcgccgtgctcgccgaggtcgccgcggccgacgcgacggatgcgctcgaggcg
ctcgcggcagcctccgccgcccagcccgcctgggccgcggtcgcgccgcgggagcgggcg
gaactgctgcgtgccgcgtacgaggcgatcatcgcccgtgccgaggagttcgcccagtgc
atgacgtacgagatgggcaagccgctggccgaggcccgtggcgaggtcacgtacggggcg
gagttcttccggtggttctccgaggaggcctgccgggtcgacggacggtggacgacggcg
ccggacggcaagacgcggctcctgacgatgaagcagccggtgggtcccacgctgatgatc
ctgccgtggaacttccccctggccatgggcacgaggaagatcggaccggccatcgccgcc
ggctgcaccatggtggtgaaacccgcccagcagacccccttgaccaccctcctgctcgcc
aaggtcctgcaggaggtgggcctgccggacggcgtactgaacgtcatcacgacgcgccgg
accggcgagacgatggcgccggtcatcgccgaccgtcgcctgcgcaaggtgaccttcacc
gggtcgacggccgtcggcacccgcctgctggaacagtgcgccccgcgggtcctccgcgtc
tccatggagctcggcggcaatgcgccgttcatcgtcttcgaggacgccgacatcgacagc
gccgtccggggcgccatgctcgccaagatgcgcaacaccggcgaggcctgcactgccgcc
aaccgattcctggtccaggacacggtggcggaggccttctcggccaagctcaccgccgtc
atgcaggaacagcgcctcggacacggcgccgcggagggcacccaggtgggccccctgatc
gacgggcgggcccgcgacggcgtggacgcgctggtccaggacgccgtggcgcacggcgcc
acgctgcgcaccggcggcgcgagtgtcgagggtcccggttacttctacgagcccacggtc
ctgaccgacgtcccctcggattcacgtatcgccgtcgaggagatcttcggtcccgtcgtg
gcgatctcgacgttcgccacggaggaagaagcgatccggcgggccaacgacaccgattac
gggctggcctcatacgtgttcaccaaggacctgggccgggcggtccgggtgagcgaggca
ctggagtacggcatggtcggcgtcaacaccgggatcgtctccaaccccgccgcacccttc
ggcggagtcaagctcagcggcctcggccgcgagggcagccacgaagggatcgaggagtac
ctcgagaccaagtacgtgggcctggccacatga
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