Actinomadura parvosata subsp. kistnae: BKM31_44155
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Entry
BKM31_44155 CDS
T04759
Name
(GenBank) hypothetical protein
KO
K00316
spermidine dehydrogenase [EC:
1.5.99.6
]
Organism
noa
Actinomadura parvosata subsp. kistnae
Pathway
noa00330
Arginine and proline metabolism
noa00410
beta-Alanine metabolism
noa01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
noa00001
]
09100 Metabolism
09105 Amino acid metabolism
00330 Arginine and proline metabolism
BKM31_44155
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
BKM31_44155
Enzymes [BR:
noa01000
]
1. Oxidoreductases
1.5 Acting on the CH-NH group of donors
1.5.99 With unknown physiological acceptors
1.5.99.6 spermidine dehydrogenase
BKM31_44155
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Motif
Pfam:
Pyr_redox_2
Motif
Other DBs
NCBI-ProteinID:
AQZ67532
UniProt:
A0A1V0ABM5
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Position
9814535..9816052
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AA seq
505 aa
AA seq
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MDVPMTRRDFFDGIAVSCVAGAGSAAPKLLDPPGPLTVRGDTSWALSVPHALRDGRFWAH
AGPAVPTGESYDLVVVGAGRGGRGAAAEWLRRHPAASVLLLDNHETLDQHETLDEPGTWE
TAGFDAVMCDEESFGADTLVSIAAPGWIDRLPIARRARRDLRALHEDPPDWFPGTTAEGR
LERLAGLTYSAFLREACGAHPDAERFCRTMPSAEWGYDARAFGAIDAWGTGYPGFAGLGL
SRAEPSRYNSPTVRRHWHGRPPATAAPALDGRARTRTGSPVVSVSNGPASATVAYFDGHQ
VRTVEAGAVILACWSAVVPYLVPGLPAERRRALRQAARVPLLEATVRLRDPGAWRRLGVR
SVRWTGAYWCATAFTPPDTVRMRATPCRSELGPAAGSVAGRRELLMTPYETLEHSVRGQL
ARLLGPAGFDPGGGIAAITIHRWGHALAPEYGRPWHAFYPDGPFPSEAARGPFGRIAIAG
SDAEPAARGEAALKAALRAVEELAP
NT seq
1518 nt
NT seq
+upstream
nt +downstream
nt
atggacgtccccatgacccgccgggacttcttcgacggcatcgccgtcagctgcgtggcc
ggggccggcagcgcggcccccaagctcctggacccgccgggcccgctcacggtacgcggg
gacaccagttgggcgctcagcgtgccgcacgcgctgcgggacggccggttctgggcgcac
gcgggccccgccgtccccacgggcgagagctacgacctcgtcgtggtcggcgcggggcgc
ggcgggcgcggcgcggcggccgagtggctgcgccgccaccccgcggcgagcgtcctgctc
ctcgacaaccacgagaccctcgaccagcacgagaccctggacgagcccggcacctgggag
acggccggcttcgacgcggtcatgtgcgacgaggagagcttcggcgccgacaccctggtc
tcgattgccgcccccggctggatcgaccggctgccgatcgcccgccgcgcccgccgggac
ctgcgcgcgctgcacgaggacccgcccgactggttccccgggacgacggccgagggccgg
ctggagcggctggccgggctgacgtactcggcgttcctgcgcgaggcgtgcggggcgcat
cccgacgcggagcggttctgccggacgatgccgtcggccgagtgggggtacgacgcgcgg
gcgttcggcgcgatcgacgcctggggcaccggctatccggggttcgcggggctggggctc
agcagggcggagccgtcccggtacaactcgccgaccgtgcggcggcactggcacgggcgc
ccgcccgcgaccgccgcccccgcgctggacgggcgggcgcggacgcggaccggcagcccg
gtcgtctccgtgtccaacggcccggcgtccgcgaccgtggcctacttcgacggccaccag
gtgcgtaccgtggaggccggggcggtgatcctcgcgtgctggagcgccgtggtgccgtac
ctggtgcccggcctgccggcggagcggcggcgggcgctgcggcaggcggcgcgggtgccg
ctgctggaggccaccgtacggctgcgcgacccgggcgcctggcggcggctcggcgtgcgg
agcgtgcggtggacgggcgcgtactggtgcgcgaccgcgttcacgccgccggacaccgtg
cggatgcgggccacgccgtgccgctcggagctggggccggccgccgggtccgtggcgggc
aggagggagctgctcatgacgccgtacgagacgctggagcacagcgtacgcggccagctc
gcccggctgctcggcccggcgggcttcgatccgggcggcggcatcgcggcgatcacgatc
caccggtgggggcacgcgctggcccccgagtacggccggccgtggcacgcgttctacccg
gacgggccgttcccgtcggaggcggcgcgcgggccgttcggcaggatcgcgatcgcgggc
tccgacgccgagccggcggcccgcggcgaggcggcgctcaaggcggcgctgcgggcggtc
gaggagctggcgccatga
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