4.7 Article

The structural conformation of the tachykinin domain drives the anti-tumoural activity of an octopus peptide in melanoma BRAFV600E

期刊

BRITISH JOURNAL OF PHARMACOLOGY
卷 179, 期 20, 页码 4878-4896

出版社

WILEY
DOI: 10.1111/bph.15923

关键词

melanoma; metabolism; mitochondria; ROS; tachykinin-receptors

资金

  1. TALENTO Program by the Gov. of the Madrid Community [2016/T1-BIO-1854, 20205A_BIO-19724, 2018-T1/BIO-11262]
  2. AMAROUT Marie Curie program [291803-AMAROUT II]
  3. Youth Funding Program by the Gov. of the Madrid Community [PEJ-2020-AI/BIO-17904]
  4. Swiss National Science Foundation
  5. Australian Postgraduate Award
  6. Australian National Health and Medical Research Council [APP1136889, APP1072113, APP1119056]
  7. Australian Research Council [CE200100012]

向作者/读者索取更多资源

This study demonstrates that Octpep-1 selectively reduces the proliferative capacity of BRAF-mutated melanoma cells and inhibits tumor progression in vivo. Octpep-1 increases ROS levels, promotes non-mitochondrial and mitochondrial respiration, and exhibits enhanced efficacy when truncated at the C-terminal region.
Background and Purpose Over past decades, targeted therapies and immunotherapy have improved survival and reduced the morbidity of patients with BRAF-mutated melanoma. However, drug resistance and relapse hinder overall success. Therefore, there is an urgent need for novel compounds with therapeutic efficacy against BRAF-melanoma. This prompted us to investigate the antiproliferative profile of a tachykinin-peptide from the Octopus kaurna, Octpep-1 in melanoma. Experimental Approach We evaluated the cytotoxicity of Octpep-1 by MTT assay. Mechanistic insights on viability and cellular damage caused by Octpep-1 were gained via flow cytometry and bioenergetics. Structural and pharmacological characterization was conducted by molecular modelling, molecular biology, CRISPR/Cas9 technology, high-throughput mRNA and calcium flux analysis. In vivo efficacy was validated in two independent xerograph animal models (mice and zebrafish). Key Results Octpep-1 selectively reduced the proliferative capacity of human melanoma BRAF(V600E)-mutated cells with minimal effects on fibroblasts. In melanoma-treated cells, Octpep-1 increased ROS with unaltered mitochondrial membrane potential and promoted non-mitochondrial and mitochondrial respiration with inefficient ATP coupling. Molecular modelling revealed that the cytotoxicity of Octpep-1 depends upon the alpha-helix and polyproline conformation in the C-terminal region of the peptide. A truncated form of the C-terminal end of Octpep-1 displayed enhanced potency and efficacy against melanoma. Octpep-1 reduced the progression of tumours in xenograft melanoma mice and zebrafish. Conclusion and Implications We unravel the intrinsic anti-tumoural properties of a tachykinin peptide. This peptide mediates the selective cytotoxicity in BRAF-mutated melanoma in vitro and prevents tumour progression in vivo, providing a foundation for a therapy against melanoma.

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