Identification of Novel Target DCTPP1 for Colorectal Cancer Therapy with the Natural Small-molecule Inhibitors Regulating Metabolic Reprogramming

08 May 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Colorectal cancer (CRC) is one of the most common malignant tumors. Identification of new effective drug targets for CRC and exploration of bioactive small-molecules are clinically urgent. The human dCTP pyrophosphatase 1 (DCTPP1) is a newly identified pyrophosphatase regulating the cellular nucleotide pool but remains unexplored as potential target for CRC treatment. Here, twelve unprecedented chemical architectures terpene-nonadride heterodimers (1–12) and their monomers (13–20) were isolated from endophyte Bipolaris victoriae S27. Compounds 1–12 represented the first example of terpene-nonadride heterodimers, in which nonadride monomers of 1 and 2 were also first example of 5/6 bicyclic nonadrides. A series of assays showed that 2 could repress proliferation and induce cell cycle arrest, apoptotic and autophagic CRC cell death in vitro and in vivo. Clinical cancer samples data revealed that DCTPP1 was a novel target associated with poor survival in CRC. DCTPP1 was also identified as a new target protein of 2. Mechanistically, compound 2 bound to DCTPP1, inhibited its enzymatic activity, intervened with amino acid metabolic reprogramming, and exerted anti-CRC activity. Our study demonstrates that DCTPP1 was a novel potential biomarker and therapeutic target in CRC, and 2 was the first natural anti-CRC drug candidate targeting DCTPP1.

Keywords

Bipolaris victoriae • terpene-nonadride heterodimers • structure elucidation • human dCTP pyrophosphatase 1 • amino acid metabolic reprogramming

Supplementary materials

Title
Description
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Title
Supporting Information for Identification of New Target DCTPP1 for Colorectal Cancer Therapy with the Natural Small-molecule Inhibitors Regulating Metabolic Reprogramming
Description
Detailed structural elucidation and NMR data of 1−20; molecular docking of 2; experimental section; MS, UV, IR, and NMR spectra of 1−14 and 18; calculations of 1−12; crystallographic data for 1, 3, and 12 (CIF).
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