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CETP C-terminal peptides drive lipid particles from large aggregates into small micelle-like structures via disorder-to-order transitions, a proposed lipid-transfer mechanism (J Struct Biol 2014)

Original title: Key structural arrangements at the C-terminus domain of CETP suggest a potential mechanism for lipid-transfer activity

J Struct Biol · · 8

García-González V, Gutiérrez-Quintanar N, Mendoza-Espinosa P, Brocos P, Piñeiro A, Mas-Oliva J

Cholesteryl-ester transfer protein (CETP) promotes cholesteryl-ester and triglyceride transfer between lipoproteins. The authors evaluated the secondary-structure stability of small peptides derived from the CETP C-terminus across a range of pH and lipid mixtures, testing lipid-dependent disorder-to-order transitions. While a phosphatidylcholine/cholesteryl-ester mixture alone formed large aggregated particles, including CETP carboxy-terminal peptides in a stable alpha-helix conformation allowed formation of small homogeneous micelle-like structures. This lipid-ordering effect was linked to secondary-structure transitions at the C-terminus when lysophosphatidic acid and lysophosphatidylcholine were used, confirmed by circular dichroism, cosedimentation, electron microscopy and molecular dynamics simulations. Purified CETP itself showed the same phenomenon, reorganizing lipid from large to smaller particles. The findings support a novel lipid-transfer mechanism in which the CETP C-terminus achieves lipid ordering through disorder-to-order structural transitions.

Read the paper (DOI)PubMed

Original abstract

The cholesteryl-ester transfer protein (CETP) promotes cholesteryl-ester and triglyceride transfer between lipoproteins. We evaluated the secondary structure stability of a series of small peptides derived from the C-terminus of CETP in a wide range of pH's and lipid mixtures, and studied their capability to carry out disorder-to-order secondary structure transitions dependent of lipids. We report that while a mixture of phosphatidylcholine/cholesteryl-esters forms large aggregated particles, the inclusion of a series of CETP carboxy-terminal peptides in a stable α-helix conformation, allows the formation of small homogeneous micelle-like structures. This phenomenon of lipid ordering was directly connected to secondary structural transitions at the C-terminus domain when lysophosphatidic acid and lysophosphatidylcholine lipids were employed. Circular dichroism, cosedimentation experiments, electron microscopy, as well as molecular dynamics simulations confirm this phenomenon. When purified CETP is studied, the same type of phenomenon occurs by promoting the reorganization of lipid from large to smaller particles. Our findings extend the emerging view for a novel mechanism of lipid transfer carried out by CETP, assigning its C-terminus domain the property to accomplish lipid ordering through secondary structure disorder-to-order transitions.

mechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.