Trichoderma reesei QM6a: TRIREDRAFT_59846
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Entry
TRIREDRAFT_59846 CDS
T02991
Name
(RefSeq) lanosterol synthase
KO
K01852
lanosterol synthase [EC:
5.4.99.7
]
Organism
tre
Trichoderma reesei QM6a
Pathway
tre00100
Steroid biosynthesis
tre01100
Metabolic pathways
tre01110
Biosynthesis of secondary metabolites
Module
tre_M00102
Ergocalciferol biosynthesis, FPP => ergosterol/ergocalciferol
Brite
KEGG Orthology (KO) [BR:
tre00001
]
09100 Metabolism
09103 Lipid metabolism
00100 Steroid biosynthesis
TRIREDRAFT_59846
Enzymes [BR:
tre01000
]
5. Isomerases
5.4 Intramolecular transferases
5.4.99 Transferring other groups
5.4.99.7 lanosterol synthase
TRIREDRAFT_59846
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Ortholog
Paralog
GFIT
Motif
Pfam:
SQHop_cyclase_C
SQHop_cyclase_N
Prenyltrans
Cellsynth_D
Motif
Other DBs
NCBI-GeneID:
18486538
NCBI-ProteinID:
XP_006964743
JGI:
Trire2_59846
UniProt:
G0RGR1
LinkDB
All DBs
Position
Unknown
AA seq
745 aa
AA seq
DB search
MATATGRDVGNGSARSRKRASDDGDSFPKRPRLEAKTDLTRWRVKDDDSRHTWHYLADDK
AAAEWPQSYAEKWYLNLPLDLPALPKAETPLQAAENGLTFFEKLQLPSGHWGCEYGGPMF
LLGGIVITWYVTKTPIPDAYATEIKNYITARAHPEDGGWGLHIEGESTVFGTAMNYIVLR
LIGVDAEDPVMVKARATLHKMGGAVNAPHWAKFWLAVLGVVDWDIVNPVPPEIWLLPDWV
PIAPWRWWIHIRQVFLPMGYIYSKRWSCEETDITRELKQELFVQPHAEINWASHRNRISP
IDNYHPKSWLLNSVNWVLVNVYNPYLRFNFIKERGEKWVSELVDMEDANTEYACLAPVNA
PMNTLVCYIRDGPDAFTTQRHIERLDEYLWVKDEGMLCNGTNGVQCWDTAFAILAAVESG
LHVQERWKPMLVKALEYLDRQQIRENCKDQEKCYRQPRKGGWPFSNRDQGYGVSDCISEA
LKAVILLQKTEGYPQLLEDRRIFDAVDTLLLYQNDNGGVSSYEARRGGEYLEMLNAAEVF
GRIMIEYDYPECTTACVTALSLFHKHWPDYRTKDVELFIKRATNWIKTNQRPDGSWYGSW
GICFTYAGMFALQSMAAIGETYANSQIARAGCDFLISKQREDGGWSESYRACETMTYVEH
ESGSQVVQTAWALIGLMAVDYPDVAKIKKGIRLITSRQQANGEWLQEAIEGVFNKSCMIS
YPNYKFTFTIKALGMFAKRYPDERL
NT seq
2238 nt
NT seq
+upstream
nt +downstream
nt
atggcgacagcaaccggtcgagacgtcgggaacggcagcgcaaggtctcgcaagcgcgcc
tctgacgatggcgacagcttccccaagcgacccaggctcgaggccaagacggatctcacg
agatggagagtcaaggatgacgacagccgccacacgtggcactatctcgccgacgacaag
gcggccgcagagtggcctcagagctatgcagagaagtggtatctgaacctgccattggac
ctgcctgcccttccgaaagccgaaacaccgcttcaggctgctgagaatggcctcaccttc
ttcgaaaagcttcaattgccctcgggccactggggctgcgagtacggcggccccatgttc
ctcctcggcggcatcgtcattacctggtacgtcaccaagacgccgattcccgacgcctac
gcgaccgagatcaagaactacatcactgcacgagcccaccccgaggatggcggctggggg
cttcacatcgaaggcgagagcactgtgttcggcaccgccatgaactacatcgttcttcgc
ctaattggagtggacgccgaagaccctgtgatggtcaaggcgagggcgactctgcacaag
atgggcggcgcagtcaatgcgcctcactgggccaaattttggctcgcagtgctgggcgtc
gtggactgggacattgtaaaccctgtgccccccgagatctggctgctgcccgactgggtg
ccgattgctccctggcggtggtggattcatattcgacaagtgtttctgcccatgggatac
atctactcgaaaagatggagctgcgaggagacggacattactcgggagctgaagcaagag
ctgttcgtccagcctcacgccgagatcaactgggcaagccaccgaaacaggatctcgccc
atcgacaactaccaccccaagtcatggctgctcaactcagtcaactgggtcctggtgaat
gtgtacaatccgtatctccgcttcaactttatcaaagagagaggcgagaaatgggtcagc
gagctcgtcgacatggaagatgccaacaccgagtatgcatgcctggcgccggttaatgct
ccgatgaacacgcttgtgtgctatatccgagatggccccgacgcattcaccacgcagagg
cacattgagagactggacgagtatctatgggtgaaggatgaaggaatgctgtgcaatggc
acaaacggcgtccagtgctgggacactgcctttgctatccttgcggctgtcgagtctggg
ctgcacgtccaagaacgctggaagcccatgctggtcaaggccctggagtatttggacagg
cagcaaatcagggagaactgcaaggaccaggagaagtgctatcgacagccccgaaagggc
ggctggccgtttagcaaccgggatcagggctacggcgtgagcgactgcatctcggaggcg
ctcaaggccgtcatcctgctgcagaagacggaaggctacccgcagctgttggaggaccgg
cgcatctttgatgccgtggacacactgctgctctaccagaacgacaacgggggcgtctcg
tcgtacgaggctcgaaggggtggcgaatacctcgagatgctgaatgccgccgaggtgttt
ggcaggatcatgattgagtacgactatccagagtgcacaacagcgtgcgttacggcatta
tcactcttccacaagcattggcccgactaccgaaccaaggacgtggagctgttcatcaag
cgtgccaccaactggatcaagacgaaccagaggcccgacggcagctggtacggaagctgg
ggcatatgcttcacatatgctggcatgtttgcgctgcaaagcatggcggccattggagag
acgtacgccaacagccagattgccagggcgggctgcgatttcctgatttccaagcagcgg
gaggatggcggttggtctgagagctaccgggcttgcgaaaccatgacatatgtcgagcac
gagtcgggatcccaggtggtgcaaacggcctgggcgctcatcgggctcatggcggtggac
tatcccgacgtggccaagatcaagaagggcatccggctgattacgagccggcagcaggcc
aacggcgagtggctgcaggaggcgattgagggcgtcttcaacaagtcgtgcatgatttcg
tatcccaactacaagtttacctttacgattaaggcgctggggatgtttgccaagagatat
ccggacgagaggctgtaa
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