KEGG   Argentina anserina (silverweed cinquefoil): 126794371
Entry
126794371         CDS       T10558                                 
Name
(RefSeq) enolase 1, chloroplastic
  KO
K01689  enolase 1/2/3 [EC:4.2.1.11]
Organism
aans  Argentina anserina (silverweed cinquefoil)
Pathway
aans00010  Glycolysis / Gluconeogenesis
aans01100  Metabolic pathways
aans01110  Biosynthesis of secondary metabolites
aans01200  Carbon metabolism
aans01230  Biosynthesis of amino acids
aans03018  RNA degradation
aans04820  Cytoskeleton in muscle cells
Module
aans_M00001  Glycolysis (Embden-Meyerhof pathway), glucose => pyruvate
aans_M00002  Glycolysis, core module involving three-carbon compounds
aans_M00003  Gluconeogenesis, oxaloacetate => fructose-6P
Brite
Enzymes [BR:aans01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.1  Hydro-lyases
    4.2.1.11  phosphopyruvate hydratase
     126794371
Messenger RNA biogenesis [BR:aans03019]
 Prokaryotic type
  Bacterial mRNA degradation factors
   RNA degradosome components
    Other RNA degradosome components
     126794371
Exosome [BR:aans04147]
 Exosomal proteins
  Proteins found in most exosomes
   126794371
Other DBs
NCBI-GeneID: 126794371
NCBI-ProteinID: XP_050377028
LinkDB
Position
5
AA seq 490 aa
MALATQSSITLLQNPFISSPEPHTNLSAASIPLPPRRRSLSARCSVAVAVAPSAAAKAAK
EYKVKSVKARQIIDSRGNPTVEVDLVTDDLYRSAVPSGASTGIYEALELRDGDEAVYGGK
GVLKAVKNINDILGPKLIGIDVRNQNDVDAVMLEIDGTPNKSKLGANAILGVSLSVCRAG
AGAKGIPLYKHIQEVSGTKELVMPVPAFNVINGGSHAGNNLAMQEFMILPVGASSFAEAL
RMGSEVYHILKGIIKKKYGQDACNVGDEGGFAPNVQDNREGLVLLIDAIEKAGYTGKIKI
GMDVAASEFLTKEGNYDLNFKKQPNDGAHVRSPQSLGDLYKEFIRDFPIVSIEDPFDQDD
WSSWSSLQSSVDIQIVGDDLLVTNPKKISEAIGKKACNALLLKVNQIGTITESIQAALDS
KAAGWGVMVSHRSGETEDNFIADLSVGLASGQIKTGAPCRSERLAKYNQLLRIEEELGNV
RYAGEAFRAP
NT seq 1473 nt   +upstreamnt  +downstreamnt
atggctctggccacacagtcctccatcaccctcctccagaatcccttcatttcctccccc
gaaccccacaccaacctctccgccgcctcgatcccgctccctccacgccgccgctccctc
tccgctcgatgctccgtcgccgtcgccgtcgccccctccgccgctgctaaggcggccaag
gagtacaaggtcaagtcggtcaaggcgcggcagatcattgacagcagagggaatccgacg
gtcgaggttgatctggtgactgatgatctctaccgatcggcggttcccagtggagcttct
accggaatctacgaggcgttggagcttagggacggtgatgaggctgtttatggaggcaaa
ggtgtgcttaaagctgtgaagaatatcaatgacattttgggtcctaagcttattggcatc
gatgtcagaaatcaaaatgatgtagatgcagttatgttggaaattgatgggacaccaaac
aaatcgaagttgggggccaatgccatattgggagtgtctcttagtgtgtgcagagcaggt
gcaggtgcaaagggaattcccctatacaagcacatccaggaagtgtctggaacaaaagag
cttgttatgcccgttcccgcttttaatgtcataaatggaggaagccatgctggaaataat
ctcgccatgcaagaatttatgatattgcctgtaggtgcctcctcatttgctgaggcactt
cgtatgggtagtgaagtttatcacatactaaagggaattatcaagaaaaagtatggacaa
gatgcttgcaatgttggggatgaagggggatttgctcccaatgtacaggacaacagggaa
ggcttggttttgctcattgatgctattgaaaaggctggttacacaggcaagattaaaatt
ggaatggatgttgctgcttcggagtttctcactaaggaagggaactatgatcttaacttt
aagaaacaaccaaatgacggggcacatgtgcgctcacctcagagccttggtgatctgtac
aaggagtttatcagagatttccctattgtgtcaattgaagatccatttgaccaagatgat
tggagctcgtggtcttcacttcaatcttcagttgacatccaaattgtgggggatgactta
ttggtcacaaatccaaagaaaatttctgaagccattgggaagaaagcatgcaatgcctta
cttttaaaggttaaccagattgggaccatcactgaatctattcaggcagcacttgactca
aaagctgcaggctggggtgtcatggttagtcaccggagtggggaaactgaggataacttc
attgctgatctttctgtaggcttggctagtggacagattaagacaggagctccctgccga
agcgaacgtttggccaagtataatcagcttctgcgcattgaggaggaacttggtaatgtc
cgttatgctggtgaagctttcagagctccttaa

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