Anaerolinea thermophila: ANT_16790
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Entry
ANT_16790 CDS
T01410
Symbol
gcvPA
Name
(GenBank) glycine dehydrogenase [decarboxylating] subunit 1
KO
K00282
glycine cleavage system P protein (glycine dehydrogenase) subunit 1 [EC:
1.4.4.2
]
Organism
atm
Anaerolinea thermophila
Pathway
atm00260
Glycine, serine and threonine metabolism
atm00630
Glyoxylate and dicarboxylate metabolism
atm00670
One carbon pool by folate
atm00785
Lipoic acid metabolism
atm01100
Metabolic pathways
atm01110
Biosynthesis of secondary metabolites
atm01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
atm00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
ANT_16790 (gcvPA)
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
ANT_16790 (gcvPA)
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
ANT_16790 (gcvPA)
00670 One carbon pool by folate
ANT_16790 (gcvPA)
Enzymes [BR:
atm01000
]
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)
ANT_16790 (gcvPA)
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Motif
Pfam:
GDC-P
Aminotran_5
Cys_Met_Meta_PP
Motif
Other DBs
NCBI-ProteinID:
BAJ63705
UniProt:
E8N5J1
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All DBs
Position
1878307..1879662
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AA seq
451 aa
AA seq
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MFVPNADPDREAMLKTIGVERIEDLFTDVPEGYRFPKLNLPEALSEMEAYAHLSELAQAN
SSVRDLTCFLGAGAYHHYIPAVVDAIIQRGEFLTAYTPYQPEVSQGTLQAIFEYQSLMAL
LTGMEVCNASHYDGATAAAEAVIMAYHHFRGKRTKVLVSHALHPQYRATIRTYMQGYTQL
TITGDECTDCDPLAGPEVLLRAIDTNTALVIVQYPDFLGRIYDYTELANTAHQAGALFAI
AVNPIALGLLKPPGEFGADIVIGEGQPLGIPLSFGGPYLGIFATRKEFVRKIAGRLVGET
VDQDGKRAYVLTLTAREQHIRREKATSNICSNQGLMALASTVYLSLLGKQGLRQVAELCY
QKAHYAADLISQIPGYTVCSNAPFFHEFVVCCPKPVSEINQALLEYGILGGFDLSTDYPG
LKNAMLIAVTEMNTREEIETLRDVLEDISHE
NT seq
1356 nt
NT seq
+upstream
nt +downstream
nt
atgttcgtacccaatgctgatcctgatcgcgaagccatgctcaaaacaattggggtggag
cgcattgaggacctgtttactgacgttccagagggatatcgttttcctaagctaaacctc
ccagaggcattatccgagatggaagcgtatgcccatctctcagaattggcacaggctaat
tcttctgtgcgcgaccttacctgcttcctgggtgctggcgcttatcatcactatatccct
gctgtcgttgacgccattattcagagaggggaattcctcaccgcctataccccctatcag
cctgaagtgtctcagggaaccttacaggcaatatttgaataccaaagtctgatggcactg
ctgaccgggatggaagtatgtaacgcatcccattatgatggggcaacggctgccgcagaa
gcagtgatcatggcttatcatcacttcagaggaaagcgtacaaaagtcctggtatctcat
gccctccaccctcaataccgggcgactattcgcacctacatgcaggggtatactcaattg
accatcacaggcgatgagtgcaccgactgtgatcctcttgcaggtccggaagtattgctg
agagcgattgataccaacaccgccctggtcatcgttcaatacccggattttctcgggaga
atttacgattataccgaactggcaaatactgcacatcaagcaggggctctatttgctata
gcggtcaatcccatagccttggggttgctcaaaccgcccggtgaatttggcgcagatatc
gtcattggggaaggtcaaccgttaggaattcctctttcatttgggggaccctatctgggt
atatttgccacccgaaaagaatttgtgagaaaaatcgccggacgcctggttggcgaaaca
gtggatcaagacggaaaacgcgcttacgtgttgaccctcacagcacgcgaacagcatatc
cgacgtgagaaagccacctcaaatatttgttctaaccagggattgatggcgctggcttcg
acagtttacctcagcctgttaggcaaacaggggcttcgccaggtggcagaactgtgctat
cagaaagcacactatgcagcagacctgatcagccagattccaggatacaccgtttgttcg
aatgcccccttcttccacgaattcgttgtatgttgtcccaaaccggtcagcgagattaat
caggcgttgttagaatacggtattcttggaggattcgacctttctacagactatccaggg
cttaaaaacgctatgctcattgccgttacagaaatgaatactcgcgaagaaattgaaacc
ttgcgggacgtgttggaggatatcagccatgagtga
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