Remersonia thermophila: 98128728
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Entry
98128728 CDS
T10833
Symbol
VTJ83DRAFT_728
Name
(RefSeq) hypothetical protein
KO
K00143
L-2-aminoadipate reductase [EC:
1.2.1.95
]
Organism
rthe Remersonia thermophila
Pathway
rthe00300
Lysine biosynthesis
rthe01100
Metabolic pathways
rthe01110
Biosynthesis of secondary metabolites
rthe01230
Biosynthesis of amino acids
Module
rthe_M00030
Lysine biosynthesis, AAA pathway, 2-oxoglutarate => 2-aminoadipate => lysine
Brite
KEGG Orthology (KO) [BR:
rthe00001
]
09100 Metabolism
09105 Amino acid metabolism
00300 Lysine biosynthesis
98128728 (VTJ83DRAFT_728)
Enzymes [BR:
rthe01000
]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.1 With NAD+ or NADP+ as acceptor
1.2.1.95 L-2-aminoadipate reductase
98128728 (VTJ83DRAFT_728)
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Gene cluster
GFIT
Motif
Pfam:
NAD_binding_4
AMP-binding
Epimerase
PP-binding
3Beta_HSD
AMP-binding_C
Polysacc_synt_2
GDP_Man_Dehyd
Motif
Other DBs
NCBI-GeneID:
98128728
NCBI-ProteinID:
XP_070870081
JGI:
Remth1_728
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All DBs
Position
1:join(2563912..2564196,2564262..2567501)
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AA seq
1174 aa
AA seq
DB search
MAQLPDPTVDLDWSGYVGSIQEHFRAQAEAHPDRICVIETKSSTNPERRFTYRQIYEAAN
TLAWYLHNAGITNGDVVMIWAHRSVDLVVSLMGILASGATMTVLDPAYPPARQQIYLEVS
QPSALLRIGRATDENGPLAPLVQKYIDDALKLKADVPELRLRDDGVLYGGEVDGQDIFAG
VRHLASAPPDVVVGPDSNPTLSFTSGSEGRPKGVLGRHYSLVKYFGWMAGRFNLSSESRY
TMLSGIAHDPIQRDIFTPLFLGAQLLVPSREDIQHEKLAEWFREHKPTVTHLTPAMGQIL
VGGATAEFPALEHVFFVGDVLTTRDCRALRRLAINANIINMYGTTETQRAVSYYEIPSRA
RDADFLDRLNKDTIPAGKGMQNVQLLVVNREDGKTMCKVGEVGEIFVRAAGLAEGYLGDP
ALNEKKFLQNWFVDNQTWVEADQKISKNEPWRRYYKGPRDRLYRTGDLGRYLESGDVECV
GRADDQVKIRGFRIELNDIDSNLSQNPLIRVCKTLVRRDRNEEPTLVSYIVPETREWQQW
LQNRGLEDVEDEGVQMGPVTVFLKKYRRMQTEVRDHLKTRLPVYAVPTIYIVLSKLPLNP
NGKVDKPNLPFPDVAERVEDASEEDMKNWESLTDTERTVAQLWADVIRGLNPKTIKRDNS
FFDLGGHSLLAQQFLLTVRKSLGTDVPIGTLYEHSSLAGFSAQVEHIKNRDTSKVGPEAG
EDAYAKSLDELLHHLPEKYQTADGQAIASAETLTIFLTGATGFLGSYLVRDVLDRTARNV
RLIAHVRGVKDSSSALARLQRSLQGYGLWKDEWSGRLSAVVGDLSKPQLGIDDATWQTLA
QEVDMVIHNGAVVHWVKRYQDMLASNVLSTIDAMRLCNEGKPKVFTFVSSTSVLDTPHYI
RLSDEQVSTGVGAILEEDDMNGSRTGLGTGYGQSKWVSEQLVREAGRRGLLGSVVRPGYI
LGDSETGVCNIDDFLIRMLKGCIQLSARPHIINTVNAVPVNHVARVVVASTLNPLPGGVH
VVHVTAHPRLRMSEFLSILEYYGYQAPEVSYEAWKEELEKFVSAGAFEKDQEQHALMPLY
HFCMNDLPANTRAPEMDDRNAVAILKTDGERWTGVDESTGYGVTREDVGRYLSYLTEVKF
VGRPDGRGRPLPELKPEVKAALAVGGTGGRGGAP
NT seq
3525 nt
NT seq
+upstream
nt +downstream
nt
atggctcagctacccgatcccacggtcgacctcgactggtcgggctatgtgggctcgatc
caggagcacttcagagctcaggccgaggcgcaccctgaccgcatctgcgtcattgagacc
aagtcttcgacgaatcccgagcgtcgctttacctaccgccagatctacgaggctgccaac
acccttgcttggtacctgcacaatgccggcatcaccaatggcgacgtggtcatgatttgg
gcccaccggtctgtcgaccttgtcgtgtccctgatgggcattctggcctcgggtgccacc
atgaccgtcctggaccctgcctaccctcctgcccgtcagcagatctacctcgaggtctcg
caacccagcgccctgctgcgaatcggtcgggctaccgacgagaacggcccccttgctccg
ctggtccagaagtacatcgacgatgccctcaagctcaaggccgatgtccccgagctcagg
ctgcgcgatgacggcgttctgtacggcggtgaggtagatggtcaagatatcttcgccggt
gtccgccacctcgcctcggcgcctcccgacgtggtcgttggtcccgactcgaatcccaca
ctgtcgttcacctcgggcagcgagggacggcccaagggcgtgctcggccgccactacagc
ttggtcaaatactttggctggatggccgggcgcttcaacctatcctcggagagcaggtac
accatgctgtctggcattgctcacgatcccatccagcgcgatatcttcacgccgctcttc
ctcggcgcccagctccttgtgccgtcgcgcgaagatatccagcacgagaagcttgccgag
tggttccgcgagcacaagcccaccgtcacccatcttacccctgccatgggtcagattctc
gtcggaggtgcgacggcggagttccccgccttggaacacgtcttctttgtgggcgacgtc
ctcaccaccagggactgccgtgctcttcgccgtctcgccatcaacgccaacattatcaac
atgtacggcaccaccgagactcagcgggcggtcagctactacgagattcccagccgcgcg
agggatgccgacttccttgataggctcaacaaggacaccattcccgccggcaagggcatg
caaaacgtccagctgttggtcgtcaaccgcgaggacggaaagaccatgtgcaaggtcgga
gaggtgggcgagatcttcgtccgcgccgccggcctcgctgagggctatctgggcgacccg
gcgctgaacgagaagaagttcctgcaaaactggtttgtcgacaaccagacgtgggttgaa
gcagaccagaagattagcaagaacgaaccgtggcggcgttactacaagggccccagggac
aggctgtaccggaccggtgatctcggtcgctatctcgaatccggagacgtggaatgcgtc
gggcgcgccgacgaccaggtcaagatccgaggcttccggattgagctgaacgatatcgac
agcaacctcagccagaacccgcttattcgcgtctgcaagaccctcgtccggagagaccgc
aacgaagagcccacccttgtcagctacatcgtgcccgagactagggaatggcagcagtgg
cttcagaacagaggtctggaagatgtcgaggatgagggtgttcagatgggccccgtcacc
gtcttcctcaagaagtacaggaggatgcagacggaggttcgtgaccacctcaagacgcgg
ctgccggtgtacgccgtgcctaccatctacattgtgctcagcaagctgcccctgaacccc
aatggcaaggtcgacaagccgaatcttccgttccccgacgttgctgagcgcgtcgaggat
gcctccgaagaggatatgaagaactgggagtctctcacggatacggaacggactgtcgcc
cagctgtgggccgacgttatccgcggcctcaaccccaagaccatcaagcgggataacagc
ttcttcgatctcggcggtcacagcctgctggctcaacagttccttcttactgttcgcaag
agcttgggaaccgatgtccctatcggcaccctctacgaacattcgagtcttgccggcttc
agcgcgcaggtcgagcacattaagaaccgcgacacgtccaaggtgggacccgaagccggc
gaggacgcctacgccaaatcccttgacgaacttctgcatcatctgccggagaagtaccag
acggccgacggccaggcgattgcctcggccgagaccctgacaatcttcctgaccggagcg
accggtttcttgggttcgtacttggtgcgcgacgtcctggaccggacggcgcggaacgtt
cggctcattgcccatgttcgcggcgtcaaggactcctccagtgccctggctcggctccaa
cggtcgctccagggttatggcctgtggaaggatgagtggtcgggcaggctgagtgctgtc
gttggcgacttgtccaagccgcagctcggcattgacgacgccacatggcagacacttgcc
caggaggtcgacatggtcatccacaatggcgccgtcgttcactgggtcaagaggtatcaa
gacatgctggcttcgaacgtcctgtccacgatcgacgcgatgcggctctgcaatgagggc
aagcccaaggtgttcacgtttgtcagctcaaccagcgtcttggacacaccccactacatc
cgcctctcggacgaacaggtcagcacgggtgtgggggccatcctggaggaggacgacatg
aacggcagccgcacgggtctgggcacgggctacggccagagcaagtgggtgtccgagcag
ctcgtccgggaggcgggccgccgcggcctcctcggctctgtcgtacggccgggttacatc
ctgggcgactcggagacaggcgtgtgcaacattgacgacttcctgatccgtatgctcaag
ggctgcatccagctgtcggcgcggccgcacatcatcaacacggtgaacgccgtgcccgtc
aaccacgtggctcgggtcgtcgtggcgtcgacgctcaacccgctgcccggtggcgtacac
gtcgtgcacgtcacggcccacccgcgcctccgcatgagcgagttcctctccattctcgag
tactacggctaccaagcgcccgaggtgtcgtatgaagcctggaaggaggaactggagaag
tttgtctcggccggcgcctttgagaaggatcaggagcagcacgccctcatgccgctctac
catttctgcatgaacgatctgccggccaacacgcgggcccccgaaatggatgatcgcaac
gccgtagccattctcaagacggatggtgagcgctggactggagttgatgagagcacagga
tatggtgtcaccagggaggacgtcggccggtacttgtcgtacctgaccgaagtcaagttt
gttggccggccggacgggaggggacgcccgctgccggaactgaagcccgaggtgaaggcc
gcattggccgtgggaggaactggtgggcggggtggtgcgccgtag
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