Methyl Scanning Approach for Enhancing the Biological Activity of the Linear Peptidic Natural Product, Efrapeptin C

Abstract

Efrapeptin C (1a) is a large peptidic natural product comprising a 15-mer linear sequence and exerts potent anticancer activity by inhibiting mitochondrial FoF1-ATP synthase. Residues 1–6 and 9–15 of 1a fold into two 310-helical domains and interact with ATP synthase, while the central β-Ala-7–Gly-8 region functions as a flexible linker of the two domains. To enhance the function of 1a by minimally modifying its structure, we envisioned attaching one small methyl group to the β-Ala-7–Gly-8 and designed six methylated analogues 1b1g, differing only in the position and configuration of the methyl group. We enabled the first solid-phase total synthesis of 1a and unified syntheses of 1b1g. The growth inhibitory activities of 1a1g against MCF-7 cells varied significantly: 1f with (S)-β3-hAla-7 and its epimer 1g with (R)-β3-hAla-7 were 4-fold more and 5-fold less potent, respectively, than 1a. Remarkably, the most potent 1f had the most stabilized 310-helical conformation and the highest hydrophobicity, which likely contributed to its effective transfer to the target protein within mitochondria. Moreover, 1f exhibited higher proteolytic stability than 1a. Therefore, the present methyl scanning approach provides a new strategy for changing the original properties of linear peptidic natural products to develop new pharmaceuticals.

Supplementary files

Article information

Article type
Edge Article
Submitted
03 Jul 2024
Accepted
15 Oct 2024
First published
19 Oct 2024
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2024, Accepted Manuscript

Methyl Scanning Approach for Enhancing the Biological Activity of the Linear Peptidic Natural Product, Efrapeptin C

Y. Lin, H. Itoh, S. Dan and M. Inoue, Chem. Sci., 2024, Accepted Manuscript , DOI: 10.1039/D4SC04384G

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