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Title:
Cholesterol modulates glycolipid conformation and receptor activity | Nature Chemical Biology
Description:
Experiments on reconstituted liposomes and sperm capacitation, an activation process involving the reduction in membrane cholesterol content and subsequent exposure of surface carbohydrate, show that cholesterol masks the presentation of glycolipid head groups by inducing a conformational shift in the glycan moiety. We document a new dimension of surface recognition in which communication is controlled through the collective behavior of lipids. Membrane cholesterol induces a tilt in glycolipid receptor headgroup, resulting in loss of access for ligand binding. This property appears to organize erythrocyte blood group presentation and glycolipid receptor function during the activation of sperm fertility, suggesting that lipid
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We document a new dimension of surface recognition in which communication is controlled through the collective behavior of lipids. Membrane cholesterol induces a tilt in glycolipid receptor headgroup, resulting in loss of access for ligand binding. This property appears to organize erythrocyte blood group presentation and glycolipid receptor function during the activation of sperm fertility, suggesting that lipid 'allostery' is a means to regulate membrane recognition processes.
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description:Experiments on reconstituted liposomes and sperm capacitation, an activation process involving the reduction in membrane cholesterol content and subsequent exposure of surface carbohydrate, show that cholesterol masks the presentation of glycolipid head groups by inducing a conformational shift in the glycan moiety.
We document a new dimension of surface recognition in which communication is controlled through the collective behavior of lipids. Membrane cholesterol induces a tilt in glycolipid receptor headgroup, resulting in loss of access for ligand binding. This property appears to organize erythrocyte blood group presentation and glycolipid receptor function during the activation of sperm fertility, suggesting that lipid 'allostery' is a means to regulate membrane recognition processes.
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