Ottowia testudinis: J1M35_12675
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Entry
J1M35_12675 CDS
T08188
Name
(GenBank) threonine synthase
KO
K01733
threonine synthase [EC:
4.2.3.1
]
Organism
otd
Ottowia testudinis
Pathway
otd00260
Glycine, serine and threonine metabolism
otd00750
Vitamin B6 metabolism
otd01100
Metabolic pathways
otd01110
Biosynthesis of secondary metabolites
otd01120
Microbial metabolism in diverse environments
otd01230
Biosynthesis of amino acids
Module
otd_M00018
Threonine biosynthesis, aspartate => homoserine => threonine
Brite
KEGG Orthology (KO) [BR:
otd00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
J1M35_12675
09108 Metabolism of cofactors and vitamins
00750 Vitamin B6 metabolism
J1M35_12675
Enzymes [BR:
otd01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.3 Acting on phosphates
4.2.3.1 threonine synthase
J1M35_12675
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GFIT
Motif
Pfam:
Thr_synth_N
PALP
THR4_C
Motif
Other DBs
NCBI-ProteinID:
QTD43993
UniProt:
A0A975CIG3
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Position
complement(2724213..2725712)
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AA seq
499 aa
AA seq
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MNYLSTRGDATPRKFCEILLEGLAPDGGLYLPGHYPQVDPATLAKWRDIYVHHGYAALAF
EVLSLYIDDIPAADLKAICEKTYTQAVFGTPEITPLKKLQDGSTGSARTDFYLQALSNGP
TLAFKDMAMQLLGHLFEYELARRGEQLNILGATSGDTGSAAEYAMRGKHGIRVFMLSPHG
RMSAFQQAQMFSLQDDNIHNIAIEGVFDDCQDIVKAVSNDLAFKRRYKIGTVNSINWARL
LAQVVYYFAGYFQATAHTATPGAGASSLPAGVNKTEQVDFTVPSGNFGNVCAGHVARMMG
LPIRRLVVATNENDVLDEFFRTGVYRVRSSADTHETSSPSMDISKASNFERFVFDLLGRD
AVRTQALFGDALSQQGRFDLAADPLFAQAASRYGFASGKSTHADRLATIRDVHQQHGVMI
DTHTADGVKVARQFVQPGLPMIVLETALPIKFAATIEEALGRAPDRPARFSGIEDLPKRV
QVLPADTTAVKALITRVCA
NT seq
1500 nt
NT seq
+upstream
nt +downstream
nt
atgaactacctctccacccgtggcgacgccacgccgcgcaaattttgtgaaattctgctg
gaagggctggcccccgatggcggcttgtacttgcccggccactatccacaggtcgatccc
gccacactggccaaatggcgcgatatttatgtgcatcatggttacgccgcactggcattt
gaagtgttgtcgctgtacatcgacgatattcccgccgccgatttgaaagcgatctgtgaa
aaaacctacacccaggcggtttttggaacgcctgagatcacgccgctgaaaaaactgcag
gatggttcgacaggctcagcacgaacggatttttatctccaagccctgtccaacggcccc
acgctcgccttcaaggacatggcgatgcagctgctgggacatctgttcgagtacgaactg
gcgcgccgcggcgagcagctcaacattctgggcgccaccagcggcgacaccggcagcgcg
gccgaatacgccatgcgcggcaagcacggcattcgcgtcttcatgctcagcccgcacggc
cgcatgagcgcattccagcaggcgcagatgttcagcctgcaagacgacaacatccacaac
attgccatcgaaggcgtgttcgatgactgccaggacatcgtcaaggccgtcagcaacgac
ctggcgttcaagcgccgctacaagatcggcacggtcaactcgatcaactgggcgcggctg
ctggcgcaggtggtgtattacttcgcggggtatttccaggcgacggcgcacacggcaact
cccggcgctggtgcgtcttcgctgcctgccggggtgaacaagaccgagcaagtcgacttc
accgtgcccagcggcaactttggcaacgtgtgcgccggacatgtagcgcggatgatgggc
ttgccgatacggcggctcgtggtggcgacgaacgagaacgacgtactcgacgagttcttt
cgcaccggcgtttaccgcgtgcgcagcagtgccgacacgcacgaaaccagcagcccgtcg
atggacatcagcaaggccagcaacttcgagcgtttcgtgttcgacctgctgggccgcgat
gcggtgcgtacccaggcgttgtttggcgatgccctgtcgcagcaaggccgttttgatctg
gccgccgaccccttgtttgcgcaagcggccagccgctacggctttgccagcggcaaaagc
acccacgccgaccgtctggccaccatccgcgatgtgcatcaacagcacggcgtcatgatc
gacacccacaccgccgatggcgtgaaagtggcgcgccagtttgtgcaacccggcttgccc
atgatcgtgctggagacggcgctgccgatcaaatttgccgcgacgattgaagaggcgctg
ggccgcgcgcctgatcggccagcccgattttccggcatcgaggacctgcccaagcgcgtg
caggtgctgccggcggataccacggccgtcaaggcgctgatcacccgggtttgtgcttaa
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