KEGG   Aquicella siphonis: AQUSIP_01820
Entry
AQUSIP_01820      CDS       T06267                                 
Symbol
gcvPA
Name
(GenBank) putative glycine dehydrogenase (decarboxylating) subunit 1
  KO
K00282  glycine cleavage system P protein (glycine dehydrogenase) subunit 1 [EC:1.4.4.2]
Organism
asip  Aquicella siphonis
Pathway
asip00260  Glycine, serine and threonine metabolism
asip00630  Glyoxylate and dicarboxylate metabolism
asip00670  One carbon pool by folate
asip00785  Lipoic acid metabolism
asip01100  Metabolic pathways
asip01110  Biosynthesis of secondary metabolites
asip01200  Carbon metabolism
Module
asip_M00621  Glycine cleavage system
Brite
KEGG Orthology (KO) [BR:asip00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00630 Glyoxylate and dicarboxylate metabolism
    AQUSIP_01820 (gcvPA)
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    AQUSIP_01820 (gcvPA)
  09108 Metabolism of cofactors and vitamins
   00785 Lipoic acid metabolism
    AQUSIP_01820 (gcvPA)
   00670 One carbon pool by folate
    AQUSIP_01820 (gcvPA)
Enzymes [BR:asip01000]
 1. Oxidoreductases
  1.4  Acting on the CH-NH2 group of donors
   1.4.4  With a disulfide as acceptor
    1.4.4.2  glycine dehydrogenase (aminomethyl-transferring)
     AQUSIP_01820 (gcvPA)
SSDB
Motif
Pfam: GDC-P Aminotran_5 Aminotran_1_2
Other DBs
NCBI-ProteinID: VVC74908
UniProt: A0A5E4PEK2
LinkDB
Position
1:203457..204839
AA seq 460 aa
MPFIPHTEQDVREMLDTIGIQKLETLFDEIPDSLRKASLEGIPSGISEMELGRLMRERAQ
QDGGMTCFIGAGAYEHHIPAAVWDVAARGEFYTAYTPYQAEASQGSLQLIYEYQTMMANL
MALEVSNASLYDGASALAEAILMAVRLGSKKHKTSILLPRSIHPHYREAAQTIVGQQNIK
LIEVPYHKDTGRIEMNTLDTLLNDDVAAFVIPQPNFFGALEEVDELTDWAREKEILSIAA
VNPMAMALLKPPGQWGREGVDIACGEGQPLGIPMASGGPYYGILCAKKAHVRQMPGRIVG
RTVDVEGKSGYVLTMQAREQHIRRAKATSNICTNQGLMVTASTIYMSLMGPQGLLRTAAL
CHERTRELKQELTAIPGVEAVFRAPFFNEIVVRLNKPVEQMLKELAARKIQGGYALGQKY
PELSDCLLICATETKTTDDIKLFAKHLRDVLEGRKLACPA
NT seq 1383 nt   +upstreamnt  +downstreamnt
atgccgttcataccgcacacagagcaagatgtaagggaaatgctggacacgataggaatt
cagaaactggaaaccctgtttgatgaaattcctgattcattgcgcaaagcctcactggaa
gggattccttcaggtatttctgaaatggaactgggacggctcatgcgcgaacgcgcgcag
caggatggcggaatgacttgctttatcggcgccggcgcctatgaacatcacatccctgcc
gctgtatgggacgtcgccgcccggggagagttttataccgcatacaccccttatcaggcg
gaagccagccagggttcgctgcaattgatatacgaataccagaccatgatggccaatctg
atggcactggaagtatctaatgcttctctctatgacggcgcctcggcgcttgctgaagcg
atactgatggcggtgcgtctgggcagcaaaaaacacaagacgagtattttgcttccgcgg
tccattcatcctcattatcgtgaagccgcgcagaccattgtcggtcagcagaatatcaag
ctgatagaagttccctatcacaaagataccggcagaatagaaatgaacaccctggacaca
ttattgaacgatgatgtggcggctttcgtgataccgcaaccgaatttttttggtgcgctg
gaagaagtggacgaattgacagactgggcgcgtgaaaaagaaattctttccatcgcggcg
gtcaatcccatggccatggccttgctgaaaccgcctggccaatggggcagggagggcgtg
gatatcgcatgcggcgagggtcagccgctgggtattcccatggcatccggcggcccttat
tatggaattttatgcgccaaaaaagcgcatgtgcggcaaatgcccggccgaatcgtggga
cgcaccgtcgatgttgagggcaaaagcggttatgtgttgaccatgcaggctcgcgaacag
catattcggcgcgccaaggcgacttctaatatttgcaccaatcaggggctgatggtgacc
gcttccacaatttatatgagtctcatgggccctcagggtttgcttcgaacagcagcgtta
tgccatgagaggacgcgggaattgaaacaggaattaacagcgattcccggtgtggaagct
gtgttccgggcgccatttttcaatgaaatcgtggtcaggctgaacaagccggtcgagcag
atgctgaaagaactggcggcccgcaaaatacaaggtggctatgcgctcggccagaaatac
cccgagctgtccgattgtctgctgatttgcgcgacggaaaccaaaacgactgatgatatc
aaactatttgcaaaacatcttcgcgatgtccttgaggggagaaaactcgcatgtccggcc
taa

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