Entry
Name
(RefSeq) steroid 17-alpha-hydroxylase/17,20 lyase isoform X1
KO
Organism
emac Eleginops maclovinus (Patagonian blennie)
Pathway
Module
emac_M00109 C21-Steroid hormone biosynthesis, progesterone => cortisol/cortisone
emac_M00110 C19/C18-Steroid hormone biosynthesis, pregnenolone => androstenedione => estrone
emac_M00976 C19-Steroid hormone biosynthesis, pregnenolone => testosterone => dihydrotestosterone
Brite
KEGG Orthology (KO) [BR:emac00001 ]
09100 Metabolism
09103 Lipid metabolism
00140 Steroid hormone biosynthesis
134876176
09180 Brite Hierarchies
09181 Protein families: metabolism
00199 Cytochrome P450 [BR:emac00199 ]
134876176
Enzymes [BR:emac01000 ]
1. Oxidoreductases
1.14 Acting on paired donors, with incorporation or reduction of molecular oxygen
1.14.14 With reduced flavin or flavoprotein as one donor, and incorporation of one atom of oxygen into the other donor
1.14.14.19 steroid 17alpha-monooxygenase
134876176
1.14.14.32 17alpha-hydroxyprogesterone deacetylase
134876176
Cytochrome P450 [BR:emac00199 ]
Cytochrome P450, animal type
CYP17 family
134876176
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
14:complement(830343..843844)
Genome browser
AA seq
511 aa AA seq DB search
MSSRVLSSLSPLLPPSPPLFFFVGAAILLLLLFLLVCSPARGSLPSLPSLPLLGSLPWMG
GGLPPHLLFSELGHRYGPVFSLLLGPHLSVVLNRHQEAREVLLQRGREFAGRPFMVTTDL
LTRGGKDIAFSDFSPLWKLHRRLVHNSFSLFGEGSGRLQDIVLSSVDDLCVELLSGGGRG
FDPSPAVTRAVTNVVCTLVFSSTYRHGDTELQEVMRYNDGIVQTIAGGGLVDIYPWMKVF
PNRCLRTLKDCITVRDRLLSRKLEEHKASLNDGPPRDLLDALLQGQGEGVQQEGGGITDD
HVLMTAAEAFGAGVETTSTTLLWILAYLVHHPPVQRRVQAELDKQVGERPVCVSDRSRLP
YLECVINEGMRIRPVSPVLIPHTAMTDSSIGGHPVGRGTRVLVNMWAIHHDPEHWDKPDL
FNPDRFLDDRGQRVTPPCFMPFGAGPRVCVGESLARLELFLFLSSLLQRMSFKLPDGASP
PNLQGRLGVVLQPLPYKVVVTPTEGWEGGAK
NT seq
1536 nt NT seq +upstream nt +downstream nt
atgtcctctcgtgtcctctcgtctctctctcccctcctcccgccctctccccccctcttc
ttcttcgttggtgcagccatcctcctcctgctcctcttcctcctggtttgctccccggct
cgcggctctctcccctctctcccttctctccccctgctgggcagcctcccctggatggga
ggaggtctccccccccacctcctcttcagtgagctgggacacaggtacggccctgtgttt
tccctgctgctcggccctcacctctctgtggttttgaaccggcatcaggaggccagagag
gtgctgctgcagcgggggagggagttcgctgggagacccttcatggtgaccacagacctg
ctgactcgggggggcaaagacatcgccttctcagacttttctcctctctggaagctccac
cgacgcctcgtccacaactccttcagtctgttcggggagggcagcgggcgcctgcaggac
atcgtcctgtcctcggtggacgacctctgcgtggagctgttgtcaggaggggggcggggc
ttcgacccgtctcccgcggtaacgagggcggtcactaacgtggtctgcacgctggtgttc
agctccacgtatcgccacggcgacaccgagctgcaggaggtgatgcggtacaatgacggc
atcgtgcaaaccatcgctgggggggggctggtggacatctacccctggatgaaggtgttt
ccgaacaggtgtctgaggacgctgaaggactgcatcaccgtcagagaccggctgctgtcc
cgcaaactggaggagcacaaggcgtctctgaatgacggccccccccgcgacctgctggat
gccctgcttcagggtcagggggagggggttcagcaggagggggggggcatcacagacgat
cacgtcctgatgacggcggccgaggcgttcggggccggcgtggaaaccacatccaccacg
ctgctgtggatcctggcctacctagtgcaccaccccccggtgcagcggcgggtgcaggca
gagctggacaagcaggtgggtgagcgtccggtgtgtgtgtcggatcgaagccggctgccg
tacctggagtgtgtgatcaacgagggcatgaggatcagaccggtcagtccagtcctgatc
cctcacaccgccatgacggacagcagtattggaggtcacccggtgggtcgtgggactcga
gttttggtgaacatgtgggcgattcaccacgaccccgaacactgggacaaacctgacctc
tttaacccggaccgtttccttgacgaccggggccagcgggtgacccccccctgcttcatg
ccgtttggggcgggacctcgagtctgtgtgggcgaatcgctggccaggctggagctgttc
ctcttcctgtcttctctgctccagcgaatgagcttcaagctgcctgacggggcttccccg
cccaacctgcaggggcggctgggcgtggtcctgcaaccgctgccttataaggtcgtggtc
actccgacggagggttgggagggtggggccaagtga