HDL biology
CETP shares seven lipid-binding helical arrays with apoA-I, apoA-II, apoC-I/II/III, and apoE despite a smaller active surface (Mol Cell Biochem 1997)
Original title: CETP and exchangeable apoproteins: common features in lipid binding activity
To define the lipid-binding active domain of CETP, this study compared its physicochemical properties, including hydrophobic moment, active surface area, and helix amphipathicity, with those of the exchangeable apoproteins apoA-I, apoA-II, apoC-I, apoC-II, apoC-III, and apoE. CETP was found to have an active surface slightly lower than that calculated for these apoproteins. Arrays of type (i, i+3) and (i, i+4), located in the lipid-binding region of the apoproteins, were also identified: seven such arrays in the amphipathic alpha-helices of CETP are proposed to contribute to its lipid-binding activity through alpha-helix stability. The authors propose that lipid binding in both CETP and the exchangeable apoproteins may depend on a conformational specificity governed by a redundant stereochemical code.
Original abstract
In order to define the active domain for lipid binding in CETP (cholesteryl ester transfer protein), our study discusses some fundamental physicochemical properties of this molecule such as hydrophobic moment, protein active surface and helix amphipathicity, in comparison to the properties reported for a series of apoproteins including apoAI, apoAII, apoCI, CII, CIII and apoE. Our study suggests that CETP corresponds to a protein with an active surface slightly lower than the one calculated for the exchangeable apoproteins AI, AII, CI, CII, CIII and E. Arrays type (i, i + 3) and (i, i + 4) were found in the region associated to lipid binding in these apoproteins. Seven such arrays located in the amphipathic alpha-helices of CETP are also suggested to contribute to the overall lipid binding activity as a consequence of alpha-helix stability. It is proposed that for lipid binding to occur in both types of molecules, the possibility of a conformational specificity given by a redundant stereochemical code can be actively operating.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.