Architecture of a single membrane spanning cytochrome P450 suggests constraints that orient the catalytic domain relative to a bilayer
Архитектура однотрансмембранного цитохрома P450 указывает на ограничения, ориентирующие каталитический домен относительно липидного бислоя
2014-02-03
SCID: 54.1/awnd8hum
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CYP51 familycytochrome P450lanosterol 14α-demethylasetransmembrane helixtriazole antifungal drugs
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Abstract (AI)
Bitopic integral membrane proteins with a single transmembrane helix play diverse roles in catalysis, cell signaling, and morphogenesis. Complete monospanning protein structures are needed to show how interaction between the transmembrane helix and catalytic domain might influence association with the membrane and function. We report crystal structures of full-length Saccharomyces cerevisiae lanosterol 14α-demethylase, a membrane monospanning cytochrome P450 of the CYP51 family that catalyzes the first postcyclization step in ergosterol biosynthesis and is inhibited by triazole drugs. The structures reveal a well-ordered N-terminal amphipathic helix preceding a putative transmembrane helix that would constrain the catalytic domain orientation to lie partly in the lipid bilayer. The structures locate the substrate lanosterol, identify putative substrate and product channels, and reveal constrained interactions with triazole antifungal drugs that are important for drug design and understanding drug resistance.
Key Findings
1
A well-ordered N-terminal amphipathic helix precedes the putative transmembrane helix and constrains the catalytic domain to orient partly within the lipid bilayer.
2
Constrained interactions between the enzyme and triazole antifungal drugs provide structural insights relevant to antifungal drug design and drug resistance.
3
Crystal structures of full-length Saccharomyces cerevisiae lanosterol 14α-demethylase provide complete structural information for a single-pass membrane cytochrome P450.
4
The structures identify the lanosterol substrate-binding location and reveal putative channels for substrate entry and product release.
Research Object
Full-length Saccharomyces cerevisiae lanosterol 14α-demethylase (CYP51), a single-transmembrane-helix cytochrome P450 associated with a lipid bilayer
Research Subject
The structural basis of catalytic-domain orientation, substrate/product channel architecture, and constrained triazole-drug interactions in the membrane-associated enzyme
Publication Details
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2014-02-03
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