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Phage-display screening yields a pentapeptide, WRMWY, that competitively inhibits CETP (J Pept Res 1998)

Original title: A peptide inhibitor of cholesteryl ester transfer protein identified by screening a bacteriophage display library

J Pept Res · · 5

Bonin PD, Bannow CA, Smith CW, Fischer HD, Erickson LA

Screening a bacteriophage display library of random decapeptides against CETP identified 36 clones, of which 12 with relatively high affinity shared an Xaa-Arg-Met-Arg-Tyr-Xaa composite motif. One synthesized decapeptide, DP1 (VTWRMWYVPA), inhibited CETP-catalyzed transfer of both cholesteryl esters and triglycerides. Amino- and carboxy-terminal truncation showed DP1 could be reduced to the pentapeptide WRMWY (also designated PNU-107368E) without losing its ability to bind CETP or inhibit CETP-mediated lipid transfer, and this pentapeptide acted as a competitive inhibitor of CETP with a Ki of 164 microM, offering an early tool compound for probing CETP-lipoprotein interactions.

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Original abstract

We screened a bacteriophage display library of random decapeptides to identify peptide inhibitors of cholesteryl ester transfer protein (CETP). After affinity selection against CETP, bacteriophage-infected Escherichia coli were plated at clonal density and 36 random clones were isolated. Analysis of the relevant portion of the bacteriophage DNA from a group of 12 clones that had a relatively high affinity for CETP revealed that the corresponding amino acid sequences of the displayed peptides exhibited an ... Xaa-Arg-Met-Arg-Tyr-Xaa ... composite motif. Based on those results, decapeptides from this group were synthesized and one of them, DP1 (NH2-VTWRMWYVPA-COOH), inhibited CETP-catalyzed transfer of cholesteryl esters and triglycerides. Amino- and carboxy-terminal truncations of DP1 demonstrated that the original decapeptide could be reduced to a pentapeptide without loss of either its ability to bind to CETP or its ability to inhibit CETP-mediated lipid transfer. That pentapeptide, NH2-WRMWY-COOH (WRMWY, PNU-107368E), binds directly to CETP and its inhibition is consistent with that of a competitive inhibitor of CETP with a Ki of 164 microM. WRMWY or modified versions of this peptide may be useful in studying the interactions between CETP and plasma lipoproteins.

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