Argentina anserina (silverweed cinquefoil): 126789149
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Entry
126789149 CDS
T10558
Name
(RefSeq) probable bifunctional methylthioribulose-1-phosphate dehydratase/enolase-phosphatase E1 1
KO
K16054
methylthioribulose 1-phosphate dehydratase / enolase-phosphatase E1 [EC:
4.2.1.109
3.1.3.77
]
Organism
aans Argentina anserina (silverweed cinquefoil)
Pathway
aans00270
Cysteine and methionine metabolism
aans01100
Metabolic pathways
Module
aans_M00034
Methionine salvage pathway
Brite
KEGG Orthology (KO) [BR:
aans00001
]
09100 Metabolism
09105 Amino acid metabolism
00270 Cysteine and methionine metabolism
126789149
Enzymes [BR:
aans01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.77 acireductone synthase
126789149
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.109 methylthioribulose 1-phosphate dehydratase
126789149
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Motif
Pfam:
Aldolase_II
Hydrolase
HAD_2
DUF6937
Motif
Other DBs
NCBI-GeneID:
126789149
NCBI-ProteinID:
XP_050371194
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Position
3:11788408..11793506
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AA seq
518 aa
AA seq
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MAAVALNGVTLGTTSQAYLESKPVNDTKVLISDLCRQFYNLGWVSGTGGSITIKVHDDSI
PKPQQLVIMSPSGVQKERMLPEDMYVLSPTGSVLRSPSPKPYPNKPPKCSDCGPLFMKAY
EMCNAGAVIHSHGIESCLVTMINPSSKEFRITHMEMIKGIKGHGYYDELVVPIIENTAYE
YELTESLAKAIAAYPKATAVLVRNHGVYIWGDSWINAKTQAECYHYLFDAAIKLNQLGLD
WSTPLHGPIHSGRIKGRFVSVKAGTVDPDNKSKPAPRCIVLDIEGTTTPISFVTDVLFPY
ARDNVERHLSETYDSAETKDDIKLLRSQVQDDLEKGVAGAVPIPSNEAGKEKVVCALVAN
VESMIKADHKITALKQLQGHIWRTGFEKNELKGIVFEDVPEALMKWHDEGIKVYIYSSGS
RLAQRLLFGYSNYGDLRKYLSGFFDTTVGNKRETKSYAEIAESVGVDRPSEVLFLTDVFQ
EAVAAKAAGLEVIVSIRPGNGPLPDSHGFKTITSFSEI
NT seq
1557 nt
NT seq
+upstream
nt +downstream
nt
atggcggcagtggcactgaacggagtgacacttggtacgacgtcgcaggcttacttagaa
agcaaaccagtcaacgacaccaaggttctgatatccgacctgtgccgccagttctacaac
ctcggatgggtgtccggtaccggtggaagcatcactatcaaagtccatgatgactcgatt
cctaagcctcagcaactcgtcatcatgtctccttctggcgttcagaaggagagaatgtta
ccagaggacatgtatgtgttatctcccactgggtctgtcctgcgttctccttctccaaag
ccttatccgaacaagcctcccaagtgttccgactgtggtccactcttcatgaaggcatat
gagatgtgcaatgcgggagctgttattcatagccatggcatcgaatcttgtcttgtaacc
atgatcaatccatcatccaaagaatttcgaattactcacatggagatgatcaaaggaatc
aaggggcatggttattatgatgaacttgtggtcccaataatagagaatactgcctatgag
tatgagctcacagagtcccttgccaaagctattgcagcatacccaaaagcaacagccgtg
cttgttcgtaaccatggtgtctatatatggggagactcatggatcaatgctaagactcag
gcggaatgctatcattatctctttgatgctgctatcaaacttaaccagttgggtttggat
tggtccactccacttcatggtccgatacattcaggacgcattaagggtagatttgtatct
gtaaaggcagggactgtggatccagataacaaatcaaaaccagctccgcgttgtattgtt
cttgacattgaggggaccactactcccatatcatttgtgactgatgttctctttccatat
gctcgcgataatgtagagaggcatttgtctgaaacatatgacagtgcagaaacaaaggat
gacataaaattactgcgatcccaggttcaagatgacctggaaaaaggcgttgctggtgct
gttcccatcccttctaacgaagctgggaaagagaaggttgtttgtgctttggttgctaat
gttgaatcaatgataaaagccgatcacaagatcacagcattgaaacaattgcaaggtcat
atatggcgaactggatttgaaaagaacgaattgaagggtatagtgtttgaggatgtacca
gaagctctcatgaaatggcatgatgagggcataaaggtttacatatactccagcggtagt
aggttggctcaaaggcttttatttggctactcgaactatggggacctgagaaaatatttg
tctggattttttgacaccacagtggggaacaaaagagaaaccaaaagttatgctgagatc
gcagaatctgttggagttgatagaccatcagaggttttgtttctaacagatgtctttcaa
gaagctgtagctgcaaaagcagcaggattggaagtgattgtatctatcagaccaggaaat
gggcctcttccagactctcatggattcaagacgatcacttctttctcagagatctaa
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