KEGG   Fusarium graminearum: FGSG_10003
Entry
FGSG_10003        CDS       T01038                                 
Name
(RefSeq) hypothetical protein
  KO
K00223  Delta24(24(1))-sterol reductase [EC:1.3.1.71]
Organism
fgr  Fusarium graminearum
Pathway
fgr00100  Steroid biosynthesis
fgr01100  Metabolic pathways
fgr01110  Biosynthesis of secondary metabolites
Module
fgr_M00102  Ergocalciferol biosynthesis, FPP => ergosterol/ergocalciferol
Brite
KEGG Orthology (KO) [BR:fgr00001]
 09100 Metabolism
  09103 Lipid metabolism
   00100 Steroid biosynthesis
    FGSG_10003
Enzymes [BR:fgr01000]
 1. Oxidoreductases
  1.3  Acting on the CH-CH group of donors
   1.3.1  With NAD+ or NADP+ as acceptor
    1.3.1.71  Delta24(241)-sterol reductase
     FGSG_10003
SSDB
Motif
Pfam: ERG4_ERG24 TrAA12 EIF3E_C RPC5_C
Other DBs
NCBI-GeneID: 23556926
NCBI-ProteinID: XP_011318924
UniProt: I1RZZ3
LinkDB
Position
1:complement(9448845..9450746)
AA seq 596 aa
MSSRYSLRQTPRKKELFEGMVETPIRRSRSARRQTSQPLSDVETDSTVEILPQPTEVLPQ
PTRRRTARFKEELDSDTDSDNMGAVNRAANGKTNGHANGNGNGYTNGHGNGNGHATNGHA
TSNGAAPIQAVIEKTKGVSHDPHVVDGWRPGQDPKVDYSGEVEFGGSFGTAAMMTLFPVL
MWYMWIGATYYDGKFPSRTEGQSWSEFGAHLANLVYTGAFPRLQVWAWYWSYLIVEGAFY
CLLPGVWGYGKPLPHEGGKQLPYYCNAYWSLYTTLACLAGLHYSGIWPLYTAVDEFGPLL
SVAILSGFLVSIVAYFSALWRGKQHRMTGYPIYDFFMGAELNPRMFGILDFKMFFEVRMP
WYILLILSLGTAARQHEQYGYVSGEVWFLVMAHFLYANACAKGEELIITTWDMYYEKWGF
MLIFWNLAGVPLSYCHCTIYLANHHPDVYRWNRGILAAMFVGYLFWYWVWDSCNSQKNRF
RAMEKGKLVLRNTFPQVPWQTIHNPKTIVSPQGTILVDGWYGLARKIHYTADVWFAVSWG
LITGFESPFPWFYPVFFCCMIAHRAARDIHRCRRKYGDAWLEYERRVPYLFIPYVI
NT seq 1791 nt   +upstreamnt  +downstreamnt
atgtcgtcaagatattctctacgccaaacccctaggaagaaggaactcttcgagggcatg
gtagaaacccctattcgccgttcacgttcagcgcgccgccagacatctcagcctctttca
gacgtcgaaaccgactctactgttgaaatccttccccagcctacagaagtcctcccccaa
cctacacgtcgacgaactgccagattcaaagaggagctcgactctgacacagactcagac
aacatgggagctgttaacagggccgccaacggcaagaccaacggccatgctaatggtaat
ggcaatggttacaccaatggtcacggcaacggcaacggacatgcgaccaatggccatgcc
acatccaacggtgctgcccctatccaggccgtcattgaaaagacaaagggcgtttcgcac
gacccgcacgtcgttgatggctggagacctggccaggaccctaaggtcgactactccggt
gaggtcgagtttggtggctcttttggtactgctgctatgatgacactctttcccgttctc
atgtggtacatgtggattggtgctacctactacgacggaaagttcccctctagaactgag
ggtcagtcttggagcgagtttggtgcccatcttgccaaccttgtctacaccggcgcgttc
ccccgtctccaggtctgggcctggtattggtcttatctcattgttgagggtgccttctac
tgcctcctccctggtgtttggggctacggtaagcctcttcctcacgagggtggcaagcag
cttccctactactgcaatgcctactggagtctctacaccacccttgcctgccttgccggt
ctgcattactctggcatctggcctctgtacactgccgttgacgagtttggccctcttctg
tccgttgccattctgagcggcttccttgttagcattgtcgcctacttctctgccctctgg
cgcggcaagcagcaccgcatgactggataccccatctatgatttctttatgggtgccgag
ctgaaccctcgtatgtttggcattctcgacttcaagatgttcttcgaggttcgcatgcct
tggtacatcctcctcatcctcagtcttggtaccgccgctcgccagcatgagcagtacggc
tacgtctctggcgaggtttggttcctcgtcatggctcacttcctctacgccaacgcctgc
gccaagggcgaagagctcatcatcactacctgggatatgtactacgagaagtggggcttc
atgctcatcttctggaacctggctggtgttcctctttcttactgccactgcaccatctac
ctggccaaccatcaccctgatgtgtaccgctggaaccgcggtatcctggctgccatgttt
gttggctacctcttctggtactgggtgtgggacagctgcaacagccaaaagaaccgcttc
cgcgccatggagaagggcaagttggttctgcgcaacaccttccctcaggtcccctggcaa
accatccacaaccccaagaccatcgtctctcctcagggaactatccttgttgacggttgg
tacggtcttgctcgcaagattcactacactgccgatgtgtggtttgccgtttcttggggt
ctgatcaccggtttcgagagcccctttccctggttctacccggttttcttttgctgtatg
atcgctcaccgagctgctcgcgatatccaccgctgccgtcgcaagtacggcgatgcctgg
ctcgagtatgagcgacgcgttccttacctctttattccttacgtaatctaa

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