Literature DB >> 33338625

Synthesis and cellular effects of a mitochondria-targeted inhibitor of the two-pore potassium channel TASK-3.

Magdalena Bachmann1, Andrea Rossa2, Giuseppe Antoniazzi2, Lucia Biasutto3, Andrea Carrer4, Monica Campagnaro1, Luigi Leanza1, Monika Gonczi5, Laszlo Csernoch5, Cristina Paradisi2, Andrea Mattarei6, Mario Zoratti3, Ildiko Szabo7.   

Abstract

The two-pore potassium channel TASK-3 has been shown to localize to both the plasma membrane and the mitochondrial inner membrane. TASK-3 is highly expressed in melanoma and breast cancer cells and has been proposed to promote tumor formation. Here we investigated whether pharmacological modulation of TASK-3, and specifically of mitochondrial TASK-3 (mitoTASK-3), had any effect on cancer cell survival and mitochondrial physiology. A novel, mitochondriotropic version of the specific TASK-3 inhibitor IN-THPP has been synthesized by addition of a positively charged triphenylphosphonium moiety. While IN-THPP was unable to induce apoptosis, mitoIN-THPP decreased survival of breast cancer cells and efficiently killed melanoma lines, which we show to express mitoTASK-3. Cell death was accompanied by mitochondrial membrane depolarization and fragmentation of the mitochondrial network, suggesting a role of the channel in the maintenance of the correct function of this organelle. In accordance, cells treated with mitoIN-THPP became rapidly depleted of mitochondrial ATP which resulted in activation of the AMP-dependent kinase AMPK. Importantly, cell survival was not affected in mouse embryonic fibroblasts and the effect of mitoIN-THPP was less pronounced in human melanoma cells stably knocked down for TASK-3 expression, indicating a certain degree of selectivity of the drug both for pathological cells and for the channel. In addition, mitoIN-THPP inhibited cancer cell migration to a higher extent than IN-THPP in two melanoma cell lines. In summary, our results point to the importance of mitoTASK-3 for melanoma cell survival and migration.
Copyright © 2020 Elsevier Ltd. All rights reserved.

Keywords:  Antimycin A (PubChem CID: 16218979); FCCP (PubChem CID: 3330); Melanoma; Mitochondria; Pharmacological targeting; Staurosporin (PubChem CID: 44259); TASK-3 potassium channel

Year:  2020        PMID: 33338625     DOI: 10.1016/j.phrs.2020.105326

Source DB:  PubMed          Journal:  Pharmacol Res        ISSN: 1043-6618            Impact factor:   7.658


  3 in total

Review 1.  Alternative Targets for Modulators of Mitochondrial Potassium Channels.

Authors:  Antoni Wrzosek; Shur Gałecka; Monika Żochowska; Anna Olszewska; Bogusz Kulawiak
Journal:  Molecules       Date:  2022-01-04       Impact factor: 4.411

2.  Epigenetic Dysregulation of KCNK9 Imprinting and Triple-Negative Breast Cancer.

Authors:  David A Skaar; Eric C Dietze; Jackelyn A Alva-Ornelas; David Ann; Dustin E Schones; Terry Hyslop; Christopher Sistrunk; Carola Zalles; Adrian Ambrose; Kendall Kennedy; Ombeni Idassi; Gustavo Miranda Carboni; Michael N Gould; Randy L Jirtle; Victoria L Seewaldt
Journal:  Cancers (Basel)       Date:  2021-11-30       Impact factor: 6.575

3.  Identifying the Prognostic Risk Factors of Synaptojanin 2 and Its Underlying Perturbations Pathways in Hepatocellular Carcinoma.

Authors:  Rui Zhang; Wei-Jia Mo; Lan-Shan Huang; Ji-Tian Chen; Wei-Zi Wu; Wei-Ying He; Zhen-Bo Feng
Journal:  Bioengineered       Date:  2021-12       Impact factor: 3.269

  3 in total

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