Entry
Name
(RefSeq) glycine dehydrogenase (decarboxylating), mitochondrial
KO
K00281 glycine cleavage system P protein (glycine dehydrogenase) [EC:1.4.4.2 ]
Organism
mdm Malus domestica (apple)
Pathway
mdm00260 Glycine, serine and threonine metabolism
mdm00630 Glyoxylate and dicarboxylate metabolism
mdm01110 Biosynthesis of secondary metabolites
Module
Brite
KEGG Orthology (KO) [BR:mdm00001 ]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
103455829
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
103455829
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
103455829
00670 One carbon pool by folate
103455829
Enzymes [BR:mdm01000 ]
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)
103455829
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SSDB
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Motif
Motif
Other DBs
LinkDB
All DBs
Position
15:join(4019935..4021185,4021337..4021582,4021694..4021771,4021861..4021961,4022048..4022243,4022376..4022501,4022656..4022841,4022946..4023059,4023189..4023341,4023494..4023682,4023790..4023867,4023952..4024077,4024163..4024261,4024350..4024467,4024597..4024685)
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AA seq
1049 aa AA seq DB search
MERARRLANRAFVKRLVSEAKQFRQNESSVLGSSTSPVLYAPSRYVSSLSPCSLTRSCPR
SDSLLSRNASHNAGFQTRSISVDALKNSDTFPRRHNSATPEEQTKMAELCGFDALDSLID
ATVPKSIRLESMKFQKFDEGLTESQMIEHMKKLASKNKIFKSFIGMGYYNTYVPPVILRN
IMENPAWYTQYTPYQAEISQGRLESLLNFQTLITDLTGLPMSNASLLDEGTAAAEAMAMC
NNIQKGKKKTFVIANNCHPQTIDICKTRADGFDLKVVTADLKDVDYSSGDVCGVLVQYPG
TEGEVLDYGEFIKNAHANGVKVVMASDLLALTVLKPPGEFGADIVVGSAQRFGVPMGYGG
PHAAFLATSQEYKRMMPGRIIGVSVDSSGKPALRMAMQTREQHIRRDKATSNICTAQALL
ANMAAMYAVYHGPEGLKTISQRVHGLAGAFAVGLKKLGTVEVQSLPFFDTVKVKVADAHA
ISDAANKLGLNLRVVDSSTITVSFDETTTLEDVDKLFKAFALGKPVPFTATSLAPEVQPA
IPSGLTRESTFLTHPIFNSYHTEHELLRYIHKLQSKDLSLCHSMIPLGSCTMKLNATTEM
MPVTWPSFTDIHPFAPTEQTEGYQEMFRDLGDLLCTITGFDSFSLQPNAGAAGEYAGLMV
IRAYHFARGDHHRNVCIIPVSAHGTNPASAAMCGMKIVTIGTDAKGNINIQELKKAAEAN
KDNLSALMVTYPSTHGVYEEGIDEICKIIHDNGGQVYMDGANMNAQVGLTSPGWIGADVC
HLNLHKTFCIPHGGGGPGMGPIGVKKHLAPFLPSHPVVSTGGLPAPDKSQPLGTISAAPW
GSALILPISYTYIAMMGSKGLTDASKIAILNANYMAKRLENYYPILFRGVNGTVAHEFIV
DLRGFKNTAGVEPEDVAKRLMDYGFHGPTMSWPVPGTLMIEPTESESKAELDRFCDALIS
IREEIAQIEKGKADLHNNVLKGAPHPPSLLMGDAWTKPYSREYAAFPASWLRSAKFWPTT
GRVDNVYGDRNLVCTLQPEAVEEQAAATA
NT seq
3150 nt NT seq +upstream nt +downstream nt
atggagcgcgcgaggcggctggcgaaccgggctttcgtgaagcgcttggtctcggaggcg
aagcagttccgccagaacgagagctctgttctgggctcctccacctcccctgttctctac
gcgccgtcgaggtacgtctcctcactctccccatgctccttgacgcgctcgtgtcccaga
tcagactcgcttctctcgagaaacgcgtcccacaatgccgggttccaaacacggtcgatt
tccgtggacgcattgaaaaacagcgacacttttccccgccgccataactccgccacgccg
gaggagcagaccaaaatggcggagttatgcgggttcgatgcccttgattcgctgatcgac
gccaccgtgcccaaatcgattcgactcgaatcgatgaagtttcagaaattcgatgagggg
ttgacagagagccagatgattgaacacatgaagaagttggcctccaaaaacaagattttc
aagagttttatcgggatgggatattacaacacttatgtcccacctgtaattttgaggaat
attatggaaaatccagcttggtacactcagtacactccttaccaggctgagatttcccag
gggaggttggaatctctgctcaatttccaaactttgatcactgacctcaccggccttccc
atgtcgaatgcatcactgctggacgaggggaccgcggccgcggaggcaatggcgatgtgt
aacaacatccaaaagggaaagaagaagacttttgtcattgccaacaactgccacccccag
accattgatatttgcaagactagagctgatggtttcgatcttaaggttgttaccgccgat
ctaaaggatgttgattacagttcgggtgatgtttgtggtgtgcttgttcagtatccgggg
actgagggcgaggttttggactatggggagtttattaagaatgctcatgccaatggggtt
aaggttgtgatggcatctgatctgttggcgttgacagtgttgaagccgcctggtgagttt
ggggcggatattgttgttggttctgcgcagaggtttggtgttccgatggggtatggaggt
cctcatgcggctttcctcgccacctcacaagagtacaagaggatgatgccagggagaatt
atcggtgttagtgttgactcctcagggaagcctgcgttgcgtatggcgatgcagacaagg
gagcagcatatccggagggacaaggctaccagcaacatttgcactgctcaggcattactt
gcaaacatggctgctatgtatgctgtatatcatggacccgaaggccttaaaaccatttcc
caaagggttcatggtcttgctggggcatttgcagttggattgaagaagcttggaacagtg
gaagttcagagccttcccttcttcgacactgtgaaggttaaggttgctgacgcacatgca
atttctgatgctgcaaacaagcttggattaaatttgagagtagtagactcgagcactatc
actgtttcgtttgacgaaacaactaccttggaggatgttgacaagcttttcaaagctttt
gctttgggcaagcctgtgcctttcactgctacatcccttgcgccagaagttcagcctgca
attccttctgggttaacaagggagagcacatttcttacccatccgatcttcaactcgtat
cataccgagcatgagttgctacgatacattcataagttgcaatcgaaagatctgtctcta
tgccacagtatgattcccttgggatcctgtaccatgaaattgaatgcaacaactgaaatg
atgccagtgacatggcctagtttcaccgatattcacccttttgctcctacagaacagact
gagggttatcaggaaatgttcagagatttgggtgacctattatgtaccatcactgggttt
gattctttctctttgcaacccaatgccggagctgctggagagtatgctgggctgatggtt
attcgggcatatcatttcgcaagaggcgatcaccaccgcaatgtgtgtattattcctgtt
tcggcacatggtaccaatcctgctagtgctgcaatgtgtggaatgaagattgtaactatt
ggaactgatgccaagggaaacatcaatattcaagagctaaagaaggctgctgaagcaaac
aaggataacctatcagctcttatggtgacatatccttcaactcatggagtgtatgaagaa
ggtattgacgagatatgcaagataattcatgacaacggaggtcaagtatacatggacggg
gctaacatgaatgcgcaggttggtctgacaagcccaggttggattggagctgacgtttgc
catctcaatcttcacaaaacattttgcattccacacggaggtggtggccctggcatgggt
cctattggtgtgaagaagcacttggcacccttcttaccatcccatcctgtggtatctacc
ggtggccttcctgcccccgacaagtctcagccacttggaaccatctctgctgcaccttgg
ggctctgcacttattttgccaatctcttatacttacatagccatgatggggtccaaggga
ctcaccgatgcatcaaagatagcaattctgaatgcaaactacatggccaaacgcttggag
aattactaccccattcttttccgtggtgtcaatggaactgttgctcacgaattcattgtt
gacttgagaggatttaagaatactgctggggtagagcctgaggacgtcgccaagcgtctt
atggactatggattccatggacctacaatgtcatggccagttcctggcactctcatgatc
gaaccaacagaaagtgaaagcaaggctgagttagaccggttttgtgatgctctaatttcc
atcagagaagagattgctcagattgagaaaggaaaagccgatcttcacaacaatgtcctt
aagggagctcctcacccgccatcacttctcatgggagatgcatggacaaagccatattcc
cgggaatatgcagccttccccgcttcctggctccgttctgccaagttctggcctactaca
ggacgtgttgacaatgtgtatggtgaccgtaacctcgtctgcacccttcaaccggaggcg
gtggaggaacaagcagcagccactgcttag