Unique amalgamation of primary and secondary structural elements transform peptaibols into potent bioactive cell-penetrating peptides

Author:

Du Lin,Risinger April L.,Mitchell Carter A.,You Jianlan,Stamps Blake W.,Pan Ning,King Jarrod B.,Bopassa Jean C.,Judge Susan I. V.,Yang Zhibo,Stevenson Bradley S.,Cichewicz Robert H.ORCID

Abstract

Mass-spectrometry-based metabolomics and molecular phylogeny data were used to identify a metabolically prolific strain ofTolypocladiumthat was obtained from a deep-water Great Lakes sediment sample. An investigation of the isolate’s secondary metabolome resulted in the purification of a 22-mer peptaibol, gichigamin A (1). This peptidic natural product exhibited an amino acid sequence including several β-alanines that occurred in a repeatingααβmotif, causing the compound to adopt a unique right-handed 311helical structure. The unusual secondary structure of 1 was confirmed by spectroscopic approaches including solution NMR, electronic circular dichroism (ECD), and single-crystal X-ray diffraction analyses. Artificial and cell-based membrane permeability assays provided evidence that the unusual combination of structural features in gichigamins conferred on them an ability to penetrate the outer membranes of mammalian cells. Compound 1 exhibited potent in vitro cytotoxicity (GI500.55 ± 0.04 µM) and in vivo antitumor effects in a MIA PaCa-2 xenograft mouse model. While the primary mechanism of cytotoxicity for 1 was consistent with ion leakage, we found that it was also able to directly depolarize mitochondria. Semisynthetic modification of 1 provided several analogs, including aC-terminus-linked coumarin derivative (22) that exhibited appreciably increased potency (GI505.4 ± 0.1 nM), but lacked ion leakage capabilities associated with a majority of naturally occurring peptaibols such as alamethicin. Compound 22 was found to enter intact cells and induced cell death in a process that was preceded by mitochondrial depolarization.

Funder

HHS | NIH | National Institute of General Medical Sciences

San Antonio Area Foundation Grant

HHS | National Institutes of Health

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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