KEGG   Typha angustifolia (narrow-leaf cattail): 140772900
Entry
140772900         CDS       T11061                                 
Name
(RefSeq) GDP-mannose 3,5-epimerase 2
  KO
K10046  GDP-D-mannose 3', 5'-epimerase [EC:5.1.3.18 5.1.3.-]
Organism
tang  Typha angustifolia (narrow-leaf cattail)
Pathway
tang00053  Ascorbate and aldarate metabolism
tang00520  Amino sugar and nucleotide sugar metabolism
tang01100  Metabolic pathways
tang01110  Biosynthesis of secondary metabolites
tang01240  Biosynthesis of cofactors
tang01250  Biosynthesis of nucleotide sugars
Module
tang_M00114  Ascorbate biosynthesis, plants, fructose-6P => ascorbate
Brite
KEGG Orthology (KO) [BR:tang00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00053 Ascorbate and aldarate metabolism
    140772900
  09107 Glycan biosynthesis and metabolism
   00520 Amino sugar and nucleotide sugar metabolism
    140772900
Enzymes [BR:tang01000]
 5. Isomerases
  5.1  Racemases and epimerases
   5.1.3  Acting on carbohydrates and derivatives
    5.1.3.18  GDP-mannose 3,5-epimerase
     140772900
SSDB
Motif
Pfam: Epimerase GDP_Man_Dehyd 3Beta_HSD NAD_binding_4 NAD_binding_10 Polysacc_synt_2 RmlD_sub_bind
Other DBs
NCBI-GeneID: 140772900
NCBI-ProteinID: XP_072971251
LinkDB
Position
13:complement(join(412338..412493,412585..412792,412919..413051,413177..413306,413416..413509,414016..414431))
AA seq 378 aa
MGSSGNDGIVYGEYTYSELEREPYWPSEKLRISITGAGGFIASHIARRLKSEGHYIIASD
WKKNEHMTEDMFCHEFHLVDLRVMDNCLKVTSGVDHVFNLAADMGGMGFIQSNHSVIMYN
NTMISFNMLEAARINSVKRFFYASSACIYPEFKQLDTNVSLKESDAWPAEPQDAYGLEKL
ATEELCKHYTKDFGIECRVGRFHNIYGPFGTWKGGREKAPAAFCRKALTSTDKFEMWGDG
LQTRSFTFIDECVEGVLRLTKSDFREPVNIGSDEMVSMNEMAEIVLSFEDKNLPIHHIPG
PEGVRGRNSDNTLIKEKLGWAPAMRLKDGLRITYFWIKEQIDKEKARGVDLSVYGTSKVV
QTQAPVQLGSLRAADGKE
NT seq 1137 nt   +upstreamnt  +downstreamnt
atgggaagcagtggaaatgatggaattgtctatggcgagtacacttactcggaattggag
agggagccatactggccatccgagaagttgcggatctcaataacaggagctggtggcttc
attgcctcacacattgcgaggcgtttgaagagtgagggccactatatcattgcttctgat
tggaagaagaatgagcacatgactgaggatatgttctgccatgagttccacctcgttgat
ctgagggtcatggacaattgcttgaaggtcacctcaggtgtagaccatgtcttcaatctt
gctgctgatatgggagggatgggcttcattcagtcaaaccactctgtcatcatgtacaac
aacactatgattagtttcaacatgcttgaagctgcaagaattaacagtgtgaaaaggttt
ttctatgcctccagtgcctgtatctatcctgagttcaagcagttggacactaacgtgagc
ctgaaggaatctgatgcttggcctgcagagcctcaagatgcttatggtttggagaagcta
gcaacagaggaattgtgcaagcactacaccaaggacttcggtattgagtgccgcgtcggc
cgattccataacatttacggtccatttggaacatggaaaggtgggagggagaaggcacct
gctgctttctgccgaaaggctcttacttccacagataaatttgagatgtggggtgatggg
ctgcagactcgatcattcacttttattgatgagtgtgttgaaggtgtcctgagattgacg
aagtcagatttccgagagcctgtaaacatcggaagtgatgaaatggttagcatgaacgaa
atggctgaaatcgtactcagcttcgaggacaagaatcttcccatccatcacattcctggt
ccggagggtgttcgtggacgtaactccgacaacactcttattaaagagaaactgggctgg
gctccggcaatgagactgaaggatggactgaggattacatatttctggatcaaagaacaa
atcgacaaggagaaagctcggggagttgatctatcagtttacggcacatctaaagtagtg
caaacacaagctcccgttcaactgggctcgctccgcgcagcagatggaaaagaatga

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