Entry
Symbol
CYP27A1
Name
(RefSeq) sterol 26-hydroxylase, mitochondrial isoform X1
KO
Organism
mcf Macaca fascicularis (crab-eating macaque)
Pathway
Module
mcf_M00104 Bile acid biosynthesis, cholesterol => cholate/chenodeoxycholate
Brite
KEGG Orthology (KO) [BR:mcf00001 ]
09100 Metabolism
09103 Lipid metabolism
00120 Primary bile acid biosynthesis
102129822 (CYP27A1)
09150 Organismal Systems
09152 Endocrine system
03320 PPAR signaling pathway
102129822 (CYP27A1)
09154 Digestive system
04979 Cholesterol metabolism
102129822 (CYP27A1)
09180 Brite Hierarchies
09181 Protein families: metabolism
00199 Cytochrome P450 [BR:mcf00199 ]
102129822 (CYP27A1)
Enzymes [BR:mcf01000 ]
1. Oxidoreductases
1.14 Acting on paired donors, with incorporation or reduction of molecular oxygen
1.14.15 With reduced iron-sulfur protein as one donor, and incorporation of one atom of oxygen into the other donor
1.14.15.15 cholestanetriol 26-monooxygenase
102129822 (CYP27A1)
Cytochrome P450 [BR:mcf00199 ]
Cytochrome P450, animal type
CYP27 family
102129822 (CYP27A1)
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
12:join(114710940..114711200,114742008..114742198,114744960..114745159,114745290..114745487,114745662..114745834,114746754..114746920,114747112..114747190,114747277..114747489,114747640..114747759)
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AA seq
533 aa AA seq DB search
MAVLGCARLRWVLRGAGRGLCPHGARAKATIPTALPSDKATEAPGAGAGPGIRRRQRSLK
EIPRLGQLRFFFQLFVQGYALQLHQLQVLYKAKYGPMWMSYLGPQMHVNLASAPLLEQVM
RQEGKYPVRNDMELWKEHRDLHDLTYGPFTTEGHHWYQLRQALNQRLLKPAEAALYTDAF
NEVIDDFMIRLDQLRAESASGNQVSDTAQLFYYFALEAICYILFEKRIGCLQRSIPEDTV
TFVRSIGLMFQNSLYATFLPKWTRPVLPFWKRYLDGWNAIFSFGKKLIDEKLEDMEAQLQ
AEGPDGVQVSGYLHFLLASGQLSPREAMGSLPELLMAGVDTTSNTLTWALYHLSKDPEIQ
EALHEEVVGVVPAGQVPQHKDFAHLPLLKAVLKETLRLYPVVPTNSRIIEKEIEVDGFLF
PKNTQFVFCHYVVSRDPTTFSEPESFQPHRWLRNSQPATPRIQHPFGSVPFGYGVRACLG
RRIAELEMQLLLARLIQKYKVVLAPETGELKSVARIVLVPNKKVGLQFLQRQC
NT seq
1602 nt NT seq +upstream nt +downstream nt
atggctgtgctgggctgcgcgaggttgaggtgggtgctgcgaggggccggccgtggcctc
tgcccccacggggccagagccaaggccacgatccctaccgccctcccctcggacaaggcc
accgaggctcccggagccggagccgggcctggtatccggcggcggcaacggagcttaaag
gagattccacgtctagggcagctgcgcttcttctttcagctgtttgttcaaggctatgcc
ctgcagctgcaccagttacaggtgctttacaaggccaagtacggtccaatgtggatgtcc
tacttagggcctcagatgcatgtgaacctggccagtgccccgctcttggagcaagtgatg
cggcaagagggcaagtacccagtacggaacgacatggagctatggaaggagcaccgggac
ctgcacgacctgacctatgggccgttcaccacggaaggacaccactggtaccagctgcgc
caggctctgaaccagcggttgctgaagccagcggaggcagcgctctatacggatgctttc
aatgaggtgattgatgattttatgattcgactggaccagctgcgggcagagagtgcttcg
gggaaccaggtgtcggacacggctcaactcttctactactttgccttggaagctatttgc
tacatcctgttcgagaaacgcattggctgcctgcagcgatccatccccgaggacaccgtg
acctttgtcagatccatcgggttaatgttccagaactcactctatgccaccttcctcccc
aagtggacccgccccgtgctgcctttctggaagcgatacctggatggttggaatgccatc
ttttccttcgggaagaagctgattgatgagaaactcgaggatatggaggcccaactgcag
gcagaggggccagatggtgtccaggtgtctggctacctgcacttcttgctggccagtgga
cagctcagtcctcgggaggccatgggcagcctgcctgaactgctcatggctggagtggac
acgacatccaacacgctgacatgggccctgtaccacctctcaaaggaccctgagatccag
gaggccttgcacgaggaagtggtgggtgtggtgccagccgggcaggtgccccagcacaaa
gactttgcccacttgccgctgctcaaagctgtgcttaaggagactctgcgcctctaccct
gtggtccccacaaattcccggatcatagaaaaggaaattgaagttgatggcttcctcttc
cccaagaatacccagtttgtgttctgccactacgtggtgtcccgggaccccaccaccttc
tctgaacctgagagcttccagccccaccgctggctgaggaacagccagcctgctaccccc
aggatccaacacccatttggctctgtgccctttggctatggggtccgggcctgcctgggc
cgcaggattgcagagctggagatgcagctactcctggcaaggctgatccagaagtacaag
gtggtcctggccccagagacgggggagttgaagagtgtggcccgcattgtcctggttccc
aataagaaagtgggcctgcagttcctgcagagacagtgctga