Entry
Name
(RefSeq) glycine dehydrogenase (decarboxylating), mitochondrial
KO
K00281 glycine cleavage system P protein (glycine dehydrogenase) [EC:1.4.4.2 ]
Organism
cmo Cucumis melo (muskmelon)
Pathway
cmo00260 Glycine, serine and threonine metabolism
cmo00630 Glyoxylate and dicarboxylate metabolism
cmo01110 Biosynthesis of secondary metabolites
Module
Brite
KEGG Orthology (KO) [BR:cmo00001 ]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
103487785
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
103487785
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
103487785
00670 One carbon pool by folate
103487785
Enzymes [BR:cmo01000 ]
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)
103487785
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
3:complement(30351442..30357321)
Genome browser
AA seq
1047 aa AA seq DB search
MERARRLAANKSALRRLVSASNHHRQIDPPFFNSSPVSFTPSRYVSSLSSNSFLFRSVRS
DSFLHRNGIGIGARSISVEALKPSDTFPRRHNSATPEEQSKMAEVCGFDSLDSLVDATVP
KSIRLQSMKFSKFDEGLTESQMIEHMQNLAAKNKIFKSYIGMGYYNTFVPPVILRNIMEN
PAWYTQYTPYQAEISQGRLESLLNYQTLITDLTGLPMSNASLLDEGTAAAEAMAMCNNIL
KGKKKTFVISNNCHPQTIDICITRAAGFDLKVVTADLKDIDYKSGDVCGVLVQYPGTEGE
VLDYGEFIKNAHANGVKVVMATDLLALTVLKPPGELGADIVVGSAQRFGVPMGYGGPHAA
FLATSQEYKRMMPGRIIGVSVDSSGKPALRMAMQTREQHIRRDKATSNICTAQALLANMA
AMYAVYHGPKGLKAIADRVHGLAGVFAAGLKKLGTAEVQGLPFFDTVKVKVADANAIADA
AYKSGINLRIVDKHTITAAFDETTTLEDVDDLFSVFSGGKPVPFTAASLASEVNSPIPSG
LVRESPYLTHPIFNTYHTEHELLRYLQKLQSKDLSLCHSMIPLGSCTMKLNATSEMMPVT
WPGFTNLHPFAPIEQSQGYQEMFNDLGDLLCSITGFDSFSLQPNAGAAGEYAGLMVIRAY
HMARGDHHRNVCIIPLSAHGTNPASAAMCGMKIVSVGTDSKGNINIPELKKAAEANKENL
SALMVTYPSTHGVYEEGIDEICKIIHENGGQVYMDGANMNAQVGLTSPGWIGADVCHLNL
HKTFCIPHGGGGPGMGPIGVKKHLAPFLPSHPVVPTGGIPAPDKAQPLGTIAAAPWGSAL
ILPISYTYIAMMGSEGLTNASKIAILNANYMAKRLENHYPVLFRGVNGTVAHEFIIDLRG
FKQTAGIEPEDVAKRLMDYGFHAPTMSWPVPGTLMIEPTESESKAELDRFCDALISIREE
IAQIEKGKADINNNVLKGAPHPPSLLMGDAWTKPYSREYAAFPASWLRASKFWPTTGRVD
NVYGDRNLICTLQPANQVVEEAAAATA
NT seq
3144 nt NT seq +upstream nt +downstream nt
atggagcgggcacggcggttggcggccaacaagtcggcgttgagacgccttgtttctgcg
tcgaaccaccaccgtcaaatcgaccctccgttcttcaattcttcccctgtttcatttact
ccttctaggtatgtttcgtcactatcctctaattcgttcttgtttagaagcgtaagatcc
gattcctttcttcatcggaatggaatcggaattggggctcgttcgatttccgttgaggct
ttgaaacctagcgatactttcccccgtcgtcataactctgctacacctgaagaacagagc
aaaatggcagaggtttgtggatttgatagcctcgattcgcttgttgatgccactgttcct
aaatcgattaggcttcaatcgatgaaattctctaagtttgatgaagggttaacggagagc
caaatgattgaacacatgcagaatttggctgctaagaataagattttcaaatcttatatt
gggatggggtattataatacctttgttcctcctgtaattttgaggaacattatggagaat
cctgcttggtatactcagtatactccatatcaagctgagatttcacaaggtcgtcttgaa
tctttgcttaactatcaaactttaatcacggatcttactggtctccctatgtccaatgct
tcattgcttgatgaaggaactgcagctgctgaagctatggcaatgtgtaataatatactt
aaggggaagaagaagacgtttgttatttcaaataattgccacccgcaaacaattgatatt
tgtatcactcgtgcagcgggtttcgatcttaaagtagtgactgctgatcttaaggatatt
gattataaatcaggtgatgtttgtggtgttcttgttcaatatcctggcactgaaggggag
gtgttagactatggggagtttattaagaatgctcatgctaatggggttaaggttgtgatg
gctaccgatcttttggcattgacggtcttgaagccaccgggtgaactgggggctgatatc
gtcgttggatctgcacagagatttggtgttccgatggggtatggaggtcctcatgctgct
tttttggccacctctcaagaatataagaggatgatgcccggaagaatcatcggtgttagt
gtcgattcgtcaggtaaacctgccctgcgtatggcgatgcagacgagagagcaacatatt
aggagggacaaggctaccagcaacatttgtaccgctcaggcgttgctggcgaacatggcg
gccatgtatgctgtgtatcacgggccaaagggtctcaaggcgattgcagatagagttcat
ggccttgccggcgtttttgctgctggactgaagaaactaggcacagcagaagtccaaggt
cttccctttttcgacactgtaaaggttaaggttgctgatgcaaatgcaattgcagatgct
gcttacaagagtggtatcaatctgcgaattgtcgacaagcacacgatcactgctgctttc
gatgaaacaacaaccttagaagatgttgatgatcttttttcagtcttctctggtggaaag
ccagttccatttactgccgcatctcttgcttccgaggtcaacagtccaattccttcgggg
ctagtaagggaaagcccgtacttaacccacccaatcttcaacacttaccatacagagcat
gaattgctgaggtacctccagaagctgcaatcaaaggacctttcactttgccacagtatg
attccattggggtcttgcacgatgaagctaaatgcaacatcggaaatgatgcccgtaact
tggcccggtttcacaaaccttcacccttttgctccaattgagcagtctcaggggtatcag
gagatgttcaatgatttgggagacttgttatgttcaataactggatttgattcattctca
ttgcaaccaaatgctggcgcggctggagaatatgctggcctcatggttatccgtgcttac
catatggcaaggggagaccaccaccggaacgtgtgcatcattccactctccgcacacggg
acgaaccctgcaagtgcagccatgtgtggaatgaagattgtatctgtcggaaccgattca
aaaggaaacatcaacattccagagctgaagaaggctgcagaggccaacaaggagaatctc
tcagcactcatggttacatatccttcaactcatggagtgtatgaagaaggcattgatgag
atctgtaagataattcatgagaatggaggtcaagtctatatggatggagccaacatgaat
gctcaggtgggtctaacaagccctggttggattggagctgatgtttgccatctcaatctc
cacaaaacattttgcattccacatggaggaggtggccctggcatgggccctattggtgtc
aagaagcacttagcaccatttttgccttcacatcctgtggtacctactggaggcattcct
gctcctgacaaagcacagcctcttggtaccattgctgctgcaccatgggggtctgctctg
attctcccgatatcttacacttatatagccatgatgggttctgagggtctaaccaatgcg
tctaagattgctattctgaacgcaaactacatggccaaacgtttagagaatcattaccct
gttctcttccgtggagtcaatggaacagttgcccacgaattcatcattgacttgagaggg
ttcaagcaaactgctggaatagagcctgaagatgttgctaaacgtctaatggattatggt
ttccatgcacctaccatgtcatggcctgtcccaggcacactcatgatcgaacccacagaa
agtgaaagcaaggcggagttggatagattctgtgacgccctcatttcgatcagagaagaa
attgcccagattgagaaaggaaaagctgatatcaacaacaatgtcctaaagggtgcacct
catccaccatctttgctaatgggagatgcatggacaaagccatattctagggaatatgca
gcttttccagcttcctggctcagggcttccaagttctggccaacgacaggacgtgttgac
aatgtgtatggtgatcgcaacctgatttgcaccctacagccagcgaaccaggttgtcgag
gaagcagcagcagccactgcttag