Entry
Name
(RefSeq) serine hydroxymethyltransferase 3, chloroplastic
KO
Organism
vvi Vitis vinifera (wine grape)
Pathway
vvi00260 Glycine, serine and threonine metabolism
vvi00630 Glyoxylate and dicarboxylate metabolism
vvi01110 Biosynthesis of secondary metabolites
vvi04981 Folate transport and metabolism
Module
Brite
KEGG Orthology (KO) [BR:vvi00001 ]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
100250728
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
100250728
09106 Metabolism of other amino acids
00460 Cyanoamino acid metabolism
100250728
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
100250728
09150 Organismal Systems
09154 Digestive system
04981 Folate transport and metabolism
100250728
Enzymes [BR:vvi01000 ]
2. Transferases
2.1 Transferring one-carbon groups
2.1.2 Hydroxymethyl-, formyl- and related transferases
2.1.2.1 glycine hydroxymethyltransferase
100250728
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SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
4:join(685366..685579,686062..686257,686346..686520,686614..686731,686830..686942,687096..687218,687948..688052,688160..688246,688328..688435,688676..688748,688838..689112)
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AA seq
528 aa AA seq DB search
MQACSGTAAMGSLQQPIWIKGSSFAPNGSTVNGFPHQIKLNSVKPCRSYIKGSLVTGKPP
SSVSVTVPGNGDSGVNFIDHGLNEADPEVCAIIYKEKQRQMKSLELIASENFTSRAVMEA
VGSCLTNKYSEGLPGKRYYGGNEFIDELETLCQKRALAAFHLDGKKWGVNVQPLSGSPAN
FEVYTALLNPHDRIMGLDLPHGGHLSHGFMTPKRRVSGTSIYFESMPYRLDESTGLVDYD
MLEKTANLFRPKLIIAGASAYPRDFDYPRMRKIADGVGAFLMMDMAHISGLVAASVVADP
FEYCDIVTTTTHKSLRGPRGGMIFFKKDSVLGVDLESAINNAVFPGLQGGPHNHTIGGLS
VCLKHAQSPEFKAYQNQVVSNCRALAGRLIELGYNLVSGGSDNHLILVDLRPLGIDGARA
EKILDMASITLNKNSVPGDKSALVPGGIRIGSPAMTTRGFSEKEFIATADFIHEGVQLSL
EAKKSVSGSKLLDFMKFVTSPDFSLIDRVSDLQRRVETLTTQFPMPGL
NT seq
1587 nt NT seq +upstream nt +downstream nt
atgcaggcttgtagtggaactgctgctatgggttctctgcaacagcccatttggattaag
gggtcaagttttgctccaaatgggtctactgtcaatgggttcccacaccaaattaaactg
aactcggttaagccatgtagatcttatatcaaaggaagcttggttactgggaagccacct
tcctctgtgtctgtcactgtgcctggaaatggggatagtggagtcaattttattgaccat
ggcttgaatgaagctgatcctgaagtgtgtgcaattatttacaaggaaaagcaacggcaa
atgaaaagcttagaacttattgcctcagagaatttcacatcccgggcagtgatggaagct
gttggttcttgcctcacaaacaaatattctgagggattgcctggtaaaaggtactatggt
ggtaatgagttcattgatgagctggaaactctgtgtcagaagagggctttggcagcattc
cacttagatggaaagaagtggggtgtcaatgttcaaccattgtctggttctccagctaac
tttgaagtatacactgcccttctcaatccacatgacagaatcatgggcttggacttacct
catgggggccacttgtctcatggtttcatgactcctaaaagacgggtatcaggcacatca
atttattttgagtctatgccttatcgacttgatgaatctacaggtcttgttgattatgac
atgcttgagaaaacagctaatctttttcgaccaaaactcattattgctggtgctagtgct
tatcctcgagattttgattatcctcgtatgaggaagattgcagatggtgttggtgctttt
ctcatgatggatatggctcacattagtggacttgttgctgcttctgtggttgctgacccc
tttgagtactgtgatattgtgacaacaacaacacacaagtctcttagaggtcctagaggt
ggcatgatcttcttcaagaaagattctgttctgggagttgacttagaatctgccatcaac
aatgctgtttttccaggtttacagggtggtccgcataaccacacaatcgggggactttca
gtctgcttaaagcatgcccaatccccagaattcaaggcttaccagaaccaggtagtgtca
aactgtagagctcttgctggccggttaatcgaattgggatataacctggtttccggggga
agtgataaccaccttattcttgtggatcttaggccattgggtattgatggggctcgggcg
gagaagattcttgacatggcttctatcaccctcaacaagaattcagtgcctggcgacaag
agtgccctcgtgcctggtggcattcgcatcggatcacctgcgatgactaccaggggattc
tccgagaaggaattcatagcaactgcagatttcattcacgagggcgtgcagctatctctt
gaagcaaaaaaatcggtttcaggatcaaagctcctagacttcatgaagtttgtaacgtcc
ccagatttctctttgatagaccgggtgtcggatttgcagaggagagtcgaaactctcaca
acccagttcccaatgcctggattataa