2008
DOI: 10.1073/pnas.0803717105
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Crystal structures of substrate-bound and substrate-free cytochrome P450 46A1, the principal cholesterol hydroxylase in the brain

Abstract: By converting cholesterol to 24S-hydroxycholesterol, cytochrome P450 46A1 (CYP46A1) initiates the major pathway for cholesterol removal from the brain. Two crystal structures of CYP46A1 were determined. First is the 1.9-Å structure of CYP46A1 complexed with a high-affinity substrate cholesterol 3-sulfate (CH-3S). The second structure is that of the substrate-free CYP46A1 at 2.4-Å resolution. CH-3S is bound in the productive orientation and occupies the entire length of the banana-shaped hydrophobic active-site… Show more

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Cited by 109 publications
(145 citation statements)
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“…This is an important reaction for the clearance of excess cholesterol from the brain. Interestingly, the substratefree structure of 46A1 exhibits a much different cavity shape (34), and the 46A1 active site adapts to bind several structurally unrelated inhibitors (35,36). In contrast, structures of microsomal 2R1 (37) indicate that the secosterol moiety of vitamin D 3 and related compounds is bound between helices I and G and the helix B-C loop.…”
Section: Specialist Enzymesmentioning
confidence: 99%
“…This is an important reaction for the clearance of excess cholesterol from the brain. Interestingly, the substratefree structure of 46A1 exhibits a much different cavity shape (34), and the 46A1 active site adapts to bind several structurally unrelated inhibitors (35,36). In contrast, structures of microsomal 2R1 (37) indicate that the secosterol moiety of vitamin D 3 and related compounds is bound between helices I and G and the helix B-C loop.…”
Section: Specialist Enzymesmentioning
confidence: 99%
“…The fact that CYP51s do not produce 100% high spin form upon substrate binding suggests that in CYP51s the axial water molecule might remain in close proximity to the heme after the substrate binding ( 33 ), as has been crystallographically proved for some other CYPs ( 58,59 ), therefore functioning as a shuttle for the delivery of the catalytic protons to the iron-bound oxygen during the three sequential steps of the CYP51 reaction. When MCP binds to T. cruzi CYP51, the water presumably remains within the active site ( Fig.…”
Section: Proton Delivery As a Possible Trigger For Mcp Activation In mentioning
confidence: 99%
“…However, recent efforts have succeeded in revealing the 3D structures of several mammalian CYPs with X-ray crystallography. [4][5][6][7][8][9][10][11] Information of the 3D structures of mammalian CYP enzymes will provide a great impact on the pharmaceutical studies.…”
Section: Introductionmentioning
confidence: 99%