Department of Medical Oncology, University of Groningen, University Medical Center Groningen, Hanzeplein 1, 9713 GZ Groningen, The Netherlands.
Laboratory of Pediatrics, Section Systems Medicine of Metabolism and Signalling, University of Groningen, University Medical Center Groningen, Antonius Deusinglaan 1, 9713 AV Groningen, The Netherlands.
Int J Mol Sci. 2022 Mar 29;23(7):3745. doi: 10.3390/ijms23073745.
Melanoma is characterized by high glucose uptake, partially mediated through elevated pyruvate dehydrogenase kinase (PDK), making PDK a potential treatment target in melanoma. We aimed to reduce glucose uptake in melanoma cell lines through PDK inhibitors dichloroacetate (DCA) and AZD7545 and through PDK knockdown, to inhibit cell growth and potentially unveil metabolic co-vulnerabilities resulting from PDK inhibition. MeWo cells were most sensitive to DCA, while SK-MEL-2 was the least sensitive, with IC values ranging from 13.3 to 27.0 mM. DCA strongly reduced PDH phosphorylation and increased the oxygen consumption rate:extracellular acidification rate (OCR:ECAR) ratio up to 6-fold. Knockdown of single PDK isoforms had similar effects on PDH phosphorylation and OCR:ECAR ratio as DCA but did not influence sensitivity to DCA. Growth inhibition by DCA was synergistic with the glutaminase inhibitor CB-839 (2- to 5-fold sensitization) and with diclofenac, known to inhibit monocarboxylate transporters (MCTs) (3- to 8-fold sensitization). CB-839 did not affect the OCR:ECAR response to DCA, whereas diclofenac strongly inhibited ECAR and further increased the OCR:ECAR ratio. We conclude that in melanoma cell lines, DCA reduces proliferation through reprogramming of cellular metabolism and synergizes with other metabolically targeted drugs.
黑色素瘤的特点是葡萄糖摄取量高,部分是通过升高的丙酮酸脱氢酶激酶 (PDK) 介导的,这使得 PDK 成为黑色素瘤的潜在治疗靶点。我们旨在通过 PDK 抑制剂二氯乙酸 (DCA) 和 AZD7545 以及 PDK 敲低来减少黑色素瘤细胞系中的葡萄糖摄取,以抑制细胞生长,并可能揭示出 PDK 抑制导致的代谢共同脆弱性。MeWo 细胞对 DCA 最敏感,而 SK-MEL-2 最不敏感,IC 值范围为 13.3 至 27.0 mM。DCA 强烈降低 PDH 磷酸化并将耗氧量:细胞外酸化率 (OCR:ECAR) 比值增加至 6 倍。单一 PDK 同工型的敲低对 PDH 磷酸化和 OCR:ECAR 比值具有与 DCA 相似的作用,但不影响对 DCA 的敏感性。DCA 的生长抑制与谷氨酰胺酶抑制剂 CB-839(2-5 倍敏化)和已知抑制单羧酸转运蛋白 (MCT) 的双氯芬酸(3-8 倍敏化)协同作用。CB-839 不影响 DCA 对 OCR:ECAR 的反应,而双氯芬酸强烈抑制 ECAR 并进一步增加 OCR:ECAR 比值。我们的结论是,在黑色素瘤细胞系中,DCA 通过重新编程细胞代谢来减少增殖,并与其他代谢靶向药物协同作用。