Plasma membrane cholesterol as a regulator of human and rodent P2X7 receptor activation and sensitization
Lucy E Robinson1, Mitesh Shridar1, Philip Smith1
1Department of Pharmacology, University of Cambridge, Tennis Court Road, Cambridge CB2 1PD, United Kingdom.
Abstract:
P2X7 receptors are nonselective cation channels gated by high extracellular ATP, but with sustained activation, receptor sensitization occurs, whereby the intrinsic pore dilates, making the cell permeable to large organic cations, which eventually leads to cell death. P2X7 receptors associate with cholesterol-rich lipid rafts, but it is unclear how this affects the properties of the receptor channel. Here we show that pore-forming properties of human and rodent P2X7 receptors are sensitive to perturbations of cholesterol levels. Acute depletion of cholesterol with 5 mm methyl-β-cyclodextrin (MCD) caused a substantial increase in the rate of agonist-evoked pore formation, as measured by the uptake of ethidium dye, whereas cholesterol loading inhibited this process. Patch clamp analysis of P2X7 receptor currents carried by Na(+) and N-methyl-D-glucamine (NMDG(+)) showed enhanced activation and current facilitation following cholesterol depletion. This contrasts with the inhibitory effect of methyl-β-cyclodextrin reported for other P2X subtypes. Mutational analysis suggests the involvement of an N-terminal region and a proximal C-terminal region that comprises multiple cholesterol recognition amino acid consensus (CRAC) motifs, in the cholesterol sensitivity of channel gating. These results reveal cholesterol as a negative regulator of P2X7 receptor pore formation, protecting cells from P2X7-mediated cell death.
Insights
Cholesterol regulates P2X7 receptors, affecting cell permeability and death. Lowering cholesterol enhances P2X7 receptor pore formation, while increasing it inhibits the process, suggesting cholesterol protects cells.
Area of Science:
- Molecular biology
- Cell biology
- Biochemistry
Background:
- P2X7 receptors are ATP-gated cation channels.
- Sustained P2X7 receptor activation leads to pore dilation, cell permeability, and death.
- P2X7 receptors associate with cholesterol-rich lipid rafts, but the functional impact is unknown.
Purpose of the Study:
- To investigate the role of cholesterol in regulating P2X7 receptor channel properties.
- To determine how cholesterol levels affect P2X7 receptor pore formation and gating.
Main Methods:
- Cholesterol depletion using methyl-β-cyclodextrin (MCD) and cholesterol loading.
- Measurement of ethidium dye uptake to assess pore formation.
- Patch clamp analysis to study ion currents (Na+ and NMDG+).
- Mutational analysis of P2X7 receptor regions.
Main Results:
- Cholesterol depletion with MCD increased agonist-evoked P2X7 receptor pore formation.
- Cholesterol loading inhibited P2X7 receptor pore formation.
- Patch clamp revealed enhanced P2X7 receptor activation and current facilitation after cholesterol depletion.
- Mutational analysis implicated N-terminal and C-terminal regions with CRAC motifs in cholesterol sensitivity.
Conclusions:
- Cholesterol acts as a negative regulator of P2X7 receptor pore formation.
- Cholesterol protects cells from P2X7 receptor-mediated cell death.
- Modulating cholesterol levels may offer therapeutic strategies for P2X7 receptor-related conditions.
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