Entry
Name
(RefSeq) glycine dehydrogenase (decarboxylating), mitochondrial-like
KO
K00281 glycine cleavage system P protein (glycine dehydrogenase) [EC:1.4.4.2 ]
Organism
csin Camellia sinensis (tea plant)
Pathway
csin00260 Glycine, serine and threonine metabolism
csin00630 Glyoxylate and dicarboxylate metabolism
csin01110 Biosynthesis of secondary metabolites
Module
Brite
KEGG Orthology (KO) [BR:csin00001 ]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
114322667
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
114322667
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
114322667
00670 One carbon pool by folate
114322667
Enzymes [BR:csin01000 ]
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)
114322667
BRITE hierarchy
SSDB
Ortholog Paralog GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
Unknown
AA seq
1055 aa AA seq DB search
MERARRLANGPILRRLVSETKHHRPNESITSSSSSSPVLYSPSRYVSSLSPCVFHGKSSR
SDVLLGRNVSYNVGFGIGSQVRSVSIEALKPSDTFPRRHNSATPEEQTKMAETCGFPSLD
SLIDATVPKSIRIENMKFSKFDEGLTENQMVEQMKKLASKNKVYKSFIGMGYYNTFVPPV
ILRNIMENPGWYTQYTPYQAEIAQGRLESLLNYQTMISDLTGLPMSNASLLDEGTAAAEA
MAMCNNIHKGQKKTFIIASNCHPQTIDVCKTRADGFDLKIVVADLKDFDYKSGDVCGVLV
QYPGTEGEVLDYGEFIKNAHAKGVKVIMASDLLALTMLKPPGELGADIVVGSAQRFGVPM
GYGGPHAAFLATSQEYKRIMPGRIIGLSIDSSGKPALRMAMQTREQHIRRAKATSNICTA
QALLANMAAMYAVYHGPEGLKTIAQRAHALAGTFAAGLKKLGTVEVQGLSFFDTVKVKCA
DSKAIVDAAYKSEMNLRIVDQNTITVSFDETATLEDVDKLFKVFACGKPVPFTAASITPE
VHNMIPPDLVRQSPFLTHPIFNSYHTEHELLRYIHKLQSKDLSLCHSMIPLGSCTMKLNA
TTEMMPVTWPSFSDIHPFAPTEQAEGFQEMFKDLGESLCTITGFDSFSLQPNAGAAGEYA
GLMVIRAYHKARGDHHRNVCIIPVSAHGTNPASAAMCGMKIVSVGTDAKGNINIEELRKA
ADANKENLSAFMVTYPSTHGVYEEGIDEICKIIHDNGGQVYMDGANMNAQVGLTSPGWIG
ADVCHLNLHKTFCIPHGGGGPGMGPIGVKKHLAPFLPSHPVVTTGGIPLPDKIQPLGTIS
AAPWGSALILPISYTYIAMMGSKGLTEASKIAILNANYMAKRLENHYPILFRGVNGTVAH
EFIVDLRGFKNTAGIEAEDVAKRLMDYGFHGPTMSWPVPGTLMIEPTESESKAELDRFCD
ALISIREEIAQIEKGKADINNNVLKGAPHPPSLLMADAWTKPYSREYAAFPAPWLHSSKF
WPTTGRVDNVYGDRNLICTLLPASQVVEEQAAAMA
NT seq
3168 nt NT seq +upstream nt +downstream nt
atggaacgtgctcggcggctcgctaacgggccaattctcagacgcctggtttctgagact
aagcaccaccgcccgaatgaatcaattactagctcttcctcttcgtccccagtgttgtat
tcgccttcgaggtatgtttcctcattgtctccttgtgtattccatggaaaaagtagcaga
tcagatgtgttactagggaggaatgtgtcatataatgttggattcggtattgggtctcaa
gttagatcagtatcaatcgaggctttgaaaccaagtgatacttttccccgtcgccataac
tctgcaaccccagaagaacaaacaaaaatggctgaaacttgtgggttccctagccttgat
tcgctaatagatgccacggtgcctaaatcgattcgtattgaaaacatgaagttttctaag
tttgatgaaggtttaactgagaaccaaatggttgagcaaatgaaaaaattagcttctaag
aataaggtttataagtcttttattggaatgggttactataacacctttgtcccacctgtt
attttgaggaacattatggaaaatccgggttggtatacccagtacactccataccaggct
gagattgcgcagggtcgtctcgagtccctgcttaattatcagaccatgatttcggatctt
accggtctccccatgtcaaatgcatcgttactcgacgaaggaactgctgcagcagaggcg
atggctatgtgtaataatattcacaaggggcagaagaaaactttcattattgctagcaac
tgccacccgcagaccattgatgtttgtaagactagagctgacggttttgatcttaaaata
gttgttgctgatctcaaagactttgactacaaatcaggcgatgtttgtggggtactggta
cagtatccgggaactgagggtgaagttttggactatggggagttcataaagaatgcacat
gcgaaaggggttaaggttattatggcaagtgatctgttggcattgacgatgttaaagcct
cctggtgaattgggtgcagatattgttgttggctcggcacagaggtttggggttccgatg
gggtatggaggtcctcatgcagctttccttgccacttcgcaagagtacaagaggataatg
cctggaagaattattggtttgagcattgattcttcaggaaaacctgctctgcgcatggca
atgcagacaagggagcaacatatccggagggccaaggccaccagcaatatctgcactgca
caggcgttgcttgcaaacatggctgctatgtatgctgtctaccatggtccagaaggcctt
aaaaccattgcccaaagggcacatgctcttgctgggacatttgctgctggactgaagaaa
ctcgggacagtagaagttcaggggctttccttcttcgacactgtgaaagttaaatgtgct
gattccaaggcaattgtggatgctgcttacaagagtgagatgaatctgcggattgttgac
caaaataccatcactgtttcttttgatgaaacagccaccttagaggatgtggataagctg
tttaaagttttcgcatgtggcaaaccagtaccatttactgctgcatctatcacaccagag
gttcataatatgatccctccagaccttgtaaggcagagcccttttctgactcacccaatc
ttcaactcgtaccacacagagcatgagctgcttagatacattcataaactacaatcaaaa
gatctttcactatgccatagcatgattcccttgggttcttgtacgatgaagttgaatgca
acaacagagatgatgcctgtgacatggcctagctttagtgatattcatccattcgctcct
actgagcaggctgaaggttttcaggaaatgttcaaagatttgggtgaatcattgtgtacc
atcactggttttgattctttctctttgcaacccaatgctggcgctgctggcgagtatgct
ggtctcatggtcattcgtgcatatcacaaggcgagaggagaccatcatcgcaatgtttgc
attatacctgtctctgcgcatgggacaaatcctgcaagtgctgcaatgtgtggaatgaaa
attgtttctgtgggaactgatgccaagggaaacatcaacattgaagagttaaggaaggct
gctgacgcaaataaggagaacctgtctgcctttatggttacatatccttcaacccatgga
gtttacgaagaaggcattgatgagatatgtaagataattcatgacaacgggggtcaagtt
tacatggatggggccaacatgaatgcacaggttggtttgactagcccgggttggattggt
gctgatgtttgccatcttaatctccacaaaactttctgtattccccatggtggaggtggt
cctggcatgggtcccattggtgtgaaaaaacacttggcaccttttctgccatcacatcct
gtggtaactacaggaggtataccgttgcctgacaagattcaaccacttggtaccatttct
gctgcgccttggggttctgcacttattttgcctatatcatacacctacattgccatgatg
gggtccaaggggttgacagaagcatcaaagatagctatcttgaatgcaaactacatggca
aaacgattggagaaccattaccccattcttttccgcggtgtcaatggaacagtcgctcat
gaattcattgtcgatttgaggggcttcaagaatactgctggtatagaggctgaagatgtt
gctaaacgtcttatggactatggatttcacggaccaacaatgtcatggcctgttccaggc
acactcatgattgaacctactgaaagtgagagcaaggcggagctagacaggttttgtgat
gctctgatttccattagagaagaaattgcacagattgagaaaggaaaagcagatattaac
aacaatgtcctcaagggagctcctcatccaccatcactgctcatggcagatgcatggaca
aaaccttactctcgggaatatgctgccttccctgctccttggctccactcatccaagttc
tggcctaccacagggcgtgtcgacaatgtgtacggtgaccgcaaccttatctgcaccctt
ctcccggcatcacaggttgttgaagaacaagctgctgctatggcttaa