Mycobacterium branderi: MBRA_41750
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Entry
MBRA_41750 CDS
T07397
Symbol
ilvA
Name
(GenBank) L-threonine dehydratase biosynthetic IlvA
KO
K01754
threonine dehydratase [EC:
4.3.1.19
]
Organism
mbrd
Mycobacterium branderi
Pathway
mbrd00260
Glycine, serine and threonine metabolism
mbrd00290
Valine, leucine and isoleucine biosynthesis
mbrd01100
Metabolic pathways
mbrd01110
Biosynthesis of secondary metabolites
mbrd01200
Carbon metabolism
mbrd01230
Biosynthesis of amino acids
Module
mbrd_M00570
Isoleucine biosynthesis, threonine => 2-oxobutanoate => isoleucine
Brite
KEGG Orthology (KO) [BR:
mbrd00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
MBRA_41750 (ilvA)
00290 Valine, leucine and isoleucine biosynthesis
MBRA_41750 (ilvA)
Enzymes [BR:
mbrd01000
]
4. Lyases
4.3 Carbon-nitrogen lyases
4.3.1 Ammonia-lyases
4.3.1.19 threonine ammonia-lyase
MBRA_41750 (ilvA)
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Motif
Pfam:
PALP
Thr_dehydrat_C
Motif
Other DBs
NCBI-ProteinID:
BBZ13980
UniProt:
A0A7I7WA23
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Position
complement(4329675..4330964)
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AA seq
429 aa
AA seq
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MSAEPSQTPSTPVTGPLTAADIDAAADRIAGVVTPTPLQLCDRLSAITGARVYLKREDLQ
SVRSYKLRGAYNLLVQLSPEEVAAGVVCSSAGNHAQGFAFACRALGIHGRVYVPAKTPKQ
KRDRIRYHGGDFIELIVGGTTYDLAAQAALDDVARSGATLVPPFDDVRTIAGQGTIAVEL
LDQLGAEPDLVVVPVGGGGCIAGITTYLAERTTNTSVLGVEPAGAAAMMAALAAGEPVTL
DYVDQFVDGAAVNRAGTLTYAALAAAGDMVSITAVDEGAVCTAMLDLYQHEGIIAEPAGA
LSVAGLLETDVEPDSTVVCLISGGNNDVSRYGEVLERSLVHLGLKHYFLVDFPQEPGALR
RFLDDVLGPNDDITLFEYVKRNNRETGEALVGIELGSAADLDGLLERMRATEIHVEALEP
GSPAYRYLL
NT seq
1290 nt
NT seq
+upstream
nt +downstream
nt
gtgtccgccgaaccgagccagacgccgagcaccccggtcaccgggccgctgaccgcggcc
gacatcgacgcggcggccgaccgaattgccggggtggtcacgccgacaccgctgcagctc
tgtgaccggctgtcggcgatcaccggcgcccgggtctacctcaaacgagaagacctgcag
tcggttcgttcctacaagctgcgcggcgcctacaacctgctggtgcagctgtcgccggaa
gaggtcgccgcgggcgtggtgtgctcgtcggctggcaaccatgcgcagggcttcgcgttc
gcctgccgcgcactgggaatccacgggcgggtctacgtgccggccaagacgcccaagcag
aaacgtgatcgcatccgctaccacggcggggacttcatcgagctgatcgtgggcggcacg
acctacgacctggccgcccaggcggcgctcgacgatgtggccaggtccggcgccaccctg
gtcccaccgttcgacgacgtgcggaccattgccgggcagggcaccatcgccgtcgaactg
ctcgaccagctcggcgccgagccggatctggtggtggtgccggtcggcggcggcggctgc
atcgcaggtatcaccacctatctggccgagcggacgacgaacacctcggtgctgggcgtc
gaacccgcgggcgcggcggcgatgatggccgcgctggccgccggcgagccggtcacgctg
gactacgtcgaccagttcgtcgacggcgccgcggtgaaccgggccgggacgctgacgtac
gcggcgctggccgccgccggggacatggtgtcgatcacagcggtcgacgagggcgcggtc
tgcaccgcgatgctcgacctgtaccagcacgagggcatcatcgccgagccggccggcgcg
ctgtcggtggccggactgctggagaccgacgttgagccggattcgactgtggtttgcctg
atttcgggcggcaacaacgacgtgtcccgctacggggaagtgctggagcggtcgctggtt
catctcggcctcaagcactatttcctcgtcgacttcccgcaggagccgggcgcattgcgc
cgattcctcgacgacgtgctcggacccaacgacgacatcacgctgttcgaatacgtcaaa
cgcaacaaccgcgagacgggcgaagcgctggtgggcatcgagctgggctcggcggccgat
ctggacggcctgctggagcgaatgcgcgccaccgagattcatgtcgaggctctggagccg
ggctcgcccgcctaccgctatttgctgtag
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