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Mechanisms

Mapping a monoclonal antibody's CETP epitope explains why it blocks triglyceride but not cholesteryl ester transfer (J Lipid Res 1999)

Original title: Epitope mapping for the anti-rabbit cholesteryl ester transfer protein monoclonal antibody that selectively inhibits triglyceride transfer

J Lipid Res · · 3

Saito K, Kobori Ki, Hashimoto H, Ito S, Manabe M, Yokoyama S

The monoclonal antibody Mab 14-8F, raised against rabbit CETP and cross-reactive with human CETP, selectively inhibits triglyceride transfer while sparing cholesteryl ester transfer. Using synthetic fragment peptides, the antibody was shown to react with the human CETP peptide R451-Q473 near the carboxyl terminus and to block binding of human CETP to a goat antibody against the R451-S476 region. Fine mapping localized a core epitope to residues 465-473 (EHLLVDFLQ) of human CETP or 485-493 (KHLLVDFLQ) of rabbit CETP, with circular dichroism showing that extending this core peptide by even one residue increased helical content and conferred antibody reactivity, indicating the epitope depends on induced conformation at a shared lipid-interaction site that has lower priority for triglyceride than for cholesteryl ester transfer.

PubMed

Original abstract

Among the monoclonal antibodies (Mab) against rabbit plasma cholesteryl ester transfer protein (CETP), Mab 14-8F cross-reacted with human CETP and selectively inhibited triglyceride transfer but not cholesteryl ester transfer (Ko, K. W. S., T. Ohnishi, and S. Yokoyama. 1994. J. Biol. Chem. 269: 28206;-28213). The epitope of this antibody was studied by using synthetic fragment peptides of rabbit and human CETP. Mab 14-8F reacted with the peptide R451-Q473 of human CETP near the carboxyl-terminal and not with the peptides representing any other regions, and inhibited the binding of human CETP to the goat antibody against its carboxyl-terminal peptide R451-S476. The experiments with a series of the fragment peptides in this region revealed that the epitope requires the segment 465-473 (EHLLVDFLQ) of human CETP or 485-493 (KHLLVDFLQ) of rabbit CETP (core epitope) though neither peptide by itself binds to the antibody. Both peptides needed extension at least by one residue beyond either amino- or carboxyl-end in order to show the reactivity to the antibody, but the effect was not highly residue-specific at least at the amino-end. Circular dichroism analysis demonstrated the increase of helical conformation by the extension of the "core epitope" peptides to either direction. Thus, the epitope is dependent on conformation of the core epitope induced by the presence of an additional residue(s) in either end. The core epitope occupies the central 64% of the reported linear epitope of Mab TP2, a widely used anti-human CETP monoclonal antibody that inhibits both cholesteryl ester and triglyceride transfer.Therefore, we conclude that the limited interaction of Mab with a common lipid interaction site causes selective inhibition of the transfer of triglyceride that has presumably lower priority than cholesteryl ester for the CETP reaction.

assaymechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.