Gulosibacter molinativorax: GMOLON4_3150
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Entry
GMOLON4_3150 CDS
T08641
Symbol
glyA
Name
(GenBank) Serine hydroxymethyltransferase
KO
K00600
glycine hydroxymethyltransferase [EC:
2.1.2.1
]
Organism
gmn
Gulosibacter molinativorax
Pathway
gmn00260
Glycine, serine and threonine metabolism
gmn00460
Cyanoamino acid metabolism
gmn00630
Glyoxylate and dicarboxylate metabolism
gmn00670
One carbon pool by folate
gmn00680
Methane metabolism
gmn01100
Metabolic pathways
gmn01110
Biosynthesis of secondary metabolites
gmn01120
Microbial metabolism in diverse environments
gmn01200
Carbon metabolism
gmn01230
Biosynthesis of amino acids
gmn01240
Biosynthesis of cofactors
Brite
KEGG Orthology (KO) [BR:
gmn00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
GMOLON4_3150 (glyA)
09102 Energy metabolism
00680 Methane metabolism
GMOLON4_3150 (glyA)
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
GMOLON4_3150 (glyA)
09106 Metabolism of other amino acids
00460 Cyanoamino acid metabolism
GMOLON4_3150 (glyA)
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
GMOLON4_3150 (glyA)
09150 Organismal Systems
09154 Digestive system
04981 Folate transport and metabolism
GMOLON4_3150 (glyA)
Enzymes [BR:
gmn01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.2 Hydroxymethyl-, formyl- and related transferases
2.1.2.1 glycine hydroxymethyltransferase
GMOLON4_3150 (glyA)
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Motif
Pfam:
SHMT
DegT_DnrJ_EryC1
Motif
Other DBs
NCBI-ProteinID:
QUY63823
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Position
3353056..3354330
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AA seq
424 aa
AA seq
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MSDYQNLPLSQVDPEIAGVLRDELTRQRNTLEMIASENFVPRSVLEAVGSVLTNKYAEGY
PGRRYYGGCEVVDIAEDLARDRAKELFGAQFANVQPHSGATANAAVLHALATPGDTILGL
SLDHGGHLTHGMKINFSGRLYNVAAYGVDYGTGRINMDEVRRLAHEHKPKVIIAGWSAYP
RELDFPLFREIADEVGAYLWVDMAHFAGLVAAGLHPNPVEHAHVVSSTVHKTIGGPRSGF
ILTNDADLSKKINSAVFPGQQGGPLMHVIAGKAVAFKLAMTDEFKDRQERTKRGAQIIAE
RLLQDDVREAGVALTTGGTDVHLVLVDLRDSPIDGKQAEDLLHEVGITVNRNSVPDDPRP
PMVTSGLRIGTPALATRGFGDEEFREVADVIAQTLKPGADLESLRARTAVLAEKFPLYAG
LVYA
NT seq
1275 nt
NT seq
+upstream
nt +downstream
nt
gtgtccgactatcagaatctgccgctctcgcaggtcgaccccgaaattgcaggtgtcctc
cgtgatgagctgacccgtcagcgcaacaccctcgagatgatcgcgagcgagaacttcgtg
ccgcgctcggtgcttgaagccgtaggcagcgtcctcaccaacaagtacgccgagggctac
ccggggcgtcgctactacggcggctgtgaggtcgtcgacatcgctgaagacctcgcccgt
gaccgcgcgaaggagctcttcggtgcacagttcgcgaacgtgcagccgcactccggcgca
acggcgaacgcggcagtcctgcacgccctcgcaacgcccggcgacacgattctcggcctt
tcgcttgaccacggtggtcacctcacgcacggcatgaagatcaacttctcgggccgtctc
tacaacgttgcggcatacggcgtcgactacggcaccggccgcatcaacatggatgaggtt
cgtcgcctcgcgcacgagcacaagcccaaagtgatcatcgccggttggtcggcgtacccg
cgcgagctcgactttccgctcttccgcgagatcgcggacgaggtcggcgcgtacctctgg
gtcgacatggcgcacttcgcgggtctcgttgccgcgggcctccaccccaaccccgtcgag
cacgcgcacgtcgtgtcctcgaccgtgcacaagacgatcggcggcccgcgctcgggcttc
attctcacgaacgacgcggatctctcgaagaagatcaactcggcagtgttccccggccag
cagggtggcccgctcatgcacgtcatcgcaggtaaggccgttgccttcaagcttgcgatg
accgacgagttcaaggaccgtcaggagcgcacgaagcgcggcgcgcagatcatcgccgag
cgccttctgcaggacgacgtccgcgaggctggcgttgcgctgacgacgggcggcaccgac
gtgcacctcgtgctcgtcgacctgcgtgactcgccgatcgacggcaagcaggccgaagac
ctcctgcacgaagtcggcatcacggtgaaccgtaactcggtgccggacgacccgcgcccg
ccgatggtcacctcgggcctgcgcatcggtacgccggcgctcgcgacccgtggcttcggc
gacgaggaattccgcgaggtcgctgacgtgatcgcgcagacgctgaagcccggcgccgac
ctcgagtcgcttcgtgcccgcaccgcagtgctcgccgagaagttcccgctttacgcaggc
ctggtctacgcatga
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