Entry
Name
(RefSeq) serine hydroxymethyltransferase 3, chloroplastic
KO
Organism
tang Typha angustifolia (narrow-leaf cattail)
Pathway
tang00260 Glycine, serine and threonine metabolism
tang00630 Glyoxylate and dicarboxylate metabolism
tang01110 Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:tang00001 ]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
140760280
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
140760280
09106 Metabolism of other amino acids
00460 Cyanoamino acid metabolism
140760280
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
140760280
09150 Organismal Systems
09154 Digestive system
04981 Folate transport and metabolism
140760280
Enzymes [BR:tang01000 ]
2. Transferases
2.1 Transferring one-carbon groups
2.1.2 Hydroxymethyl-, formyl- and related transferases
2.1.2.1 glycine hydroxymethyltransferase
140760280
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Motif
Motif
Other DBs
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All DBs
Position
5:complement(join(500770..501044,501152..501224,501853..501960,502043..502129,502273..502377,504429..504551,504640..504752,504875..504992,505071..505245,505329..505524,507532..507754))
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AA seq
531 aa AA seq DB search
MSAYSAAMMGSIQQTACWTKYSSLRYNVLAANKSLHHSTLNYVNHGQSCNALSVRGSLTT
GRPPSVSVPDLDSVGILQSSTDYSLRDADPEVHALIEKEKQRQFNCLELIASENFTSRAV
MEASGSCLTNKYSEGLPGKRYYGGNEYIDQVENLCQKRALQAFHLDESKWGVNVQPLSGS
PANFEVYTALLRPHDRIMGLDLPHGGHLSHGFMTPKRRVSGTSIFFESMPYRLDESTGYV
DYDMLEKTAILFRPKLIIAGASAYPRDFDYPRMRKIADAVGAFLMMDMAHISGLVAAKVV
ADPFEYCDVVTTTTHKSLRGPRGGMIFYRNDAVLGVDLETAINNAVFPGLQGGPHNHTIA
ALAVCLGHAQSAEFRAYQSQVISNCKALASRMTELGYKLVSGGTDNHLVLVDLRPLDIDG
ARVEKILDISSITLNKNSVPGDKSALVPGGIRIGTPAMTTRGLKETDFRLVAELIHEGIQ
IALKVKACVKGTKLKDFMTFVESPEFSFKESISELETKVRALTNQFPIPGV
NT seq
1596 nt NT seq +upstream nt +downstream nt
atgtctgcttacagtgcagctatgatgggttctattcaacagactgcttgttggaccaag
tattctagcttacgttataatgtccttgcagcaaacaaatctctgcatcattctacactt
aattatgtcaatcatggccaatcatgcaatgcgcttagtgtcaggggaagcttgaccact
ggaagaccaccttctgtttcagtccctgacttggattcagtaggaattttgcaaagttcc
acagactattccttgagggatgcggatcctgaagtgcatgcactaattgagaaggaaaag
caacgtcaattcaattgtttagagctcattgcttctgaaaactttacctcgcgagcagtc
atggaagcatctggctcttgcctcacaaacaaatattctgaaggattacctggtaaaagg
tactatggaggcaatgagtatattgatcaggttgagaacctttgtcagaaaagagctctg
caagcatttcaccttgatgagagtaaatggggtgtaaacgtgcagccactgtctggttct
cctgctaattttgaagtttacacagctttgcttagacctcatgacagaataatgggtctt
gacctaccccatggagggcacctttctcatgggtttatgactcctaaaagacgagtatca
ggcacctcaatcttttttgagtctatgccatatcgtcttgatgaatctacaggctatgtt
gattatgatatgcttgagaaaacagctattctttttcgtccaaagcttattattgctgga
gcaagtgcatatcccagagattttgattatcctcgtatgaggaagatagcagatgctgta
ggtgcattcctcatgatggatatggctcatatcagtggacttgttgctgctaaagtagtt
gctgatccctttgaatattgtgatgtggttacgacaacgacacataagtccttgcgaggt
cctcgtggtggcatgatattttacagaaatgatgcagttcttggtgttgacttagagaca
gcgataaataatgccgtattcccaggtttgcagggtggtcctcacaaccatacaattgct
gcgcttgctgtatgtctgggacatgctcaatcagctgaattcagggcttatcagagccag
gttatatccaattgcaaagcccttgcatccagaatgacagaattgggttacaagctagtt
tctggtggaaccgataaccaccttgttctggtggacttgagaccattagatattgatggt
gctcgggttgagaagattttggacattagttcaatcacgctcaacaaaaactcagtgcca
ggtgataaaagtgcactagtccctggaggcatccgaatagggacgcctgcaatgacgacc
agaggacttaaggagacggatttcagacttgtcgcagagctcatccacgagggcatacag
atcgctctcaaagttaaggcttgtgtcaaaggaacaaagcttaaggacttcatgaccttt
gtagaatccccagagttctcctttaaagagtctatatcagaactcgagacgaaggtccgg
gctcttacaaaccaatttcccatccctggagtatag