Fucoxanthin induces human melanoma cytotoxicity by thwarting the JAK2/STAT3/BCL‐xL signaling axis

Author:

Kuo Min‐Yung1,Dai Wen‐Chyi2,Chang Jie‐Li3,Chang Jo‐Shu45,Lee Tse‐Min6,Chang Chia‐Che25789ORCID

Affiliation:

1. Pediatric Surgery Division, Department of Surgery Tungs' Taichung MetroHarbor Hospital Taichung Taiwan

2. Doctoral Program in Biotechnology Industrial Innovation and Management National Chung Hsing University Taichung Taiwan

3. Taichung Municipal Taichung First Senior High School Taichung Taiwan

4. Department of Chemical and Materials Engineering, Research Center for Smart Sustainable Circular Economy Tunghai University Taichung Taiwan

5. Department of Life Sciences National Chung Hsing University Taichung Taiwan

6. Department of Marine Biotechnology and Resources National Sun Yat‐sen University Kaohsiung Taiwan

7. Graduate Institute of Biomedical Sciences, Master Program in Precision Health, Doctoral Program in Translational Medicine, Rong Hsing Research Center for Translational Medicine, The iEGG and Animal Biotechnology Research Center National Chung Hsing University Taichung Taiwan

8. Department of Medical Laboratory Science and Biotechnology Asia University Taichung Taiwan

9. Department of Medical Research China Medical University Hospital Taichung Taiwan

Abstract

AbstractMelanoma is the most lethal skin malignancy. Fucoxanthin is a marine carotenoid with significant anticancer activities. Intriguingly, Fucoxanthin's impact on human melanoma remains elusive. Signal Transducer and Activator of Transcription 3 (STAT3) represents a promising target in cancer therapy due to its persistent activation in various cancers, including melanoma. Herein, we revealed that Fucoxanthin is cytotoxic to human melanoma cell lines A2758 and A375 while showing limited cytotoxicity to normal human melanocytes. Apoptosis is a primary reason for Fucoxanthin's melanoma cytotoxicity, as the pan‐caspase inhibitor z‐VAD‐fmk drastically abrogated Fucoxanthin‐elicited clonogenicity blockage. Besides, Fucoxanthin downregulated tyrosine 705‐phosphorylated STAT3 (p‐STAT3 (Y705)), either inherently present in melanoma cells or inducible by interleukin 6 (IL‐6) stimulation. Notably, ectopic expression of STAT3‐C, a dominant‐active STAT3 mutant, abolished Fucoxanthin‐elicited melanoma cell apoptosis and clonogenicity inhibition, supporting the pivotal role of STAT3 blockage in Fucoxanthin's melanoma cytotoxicity. Moreover, Fucoxanthin lowered BCL‐xL levels by blocking STAT3 activation, while ectopic BCL‐xL expression rescued melanoma cells from Fucoxanthin‐induced killing. Lastly, Fucoxanthin was found to diminish the levels of JAK2 with dual phosphorylation at tyrosine residues 1007 and 1008 in melanoma cells, suggesting that Fucoxanthin impairs STAT3 signaling by blocking JAK2 activation. Collectively, we present the first evidence that Fucoxanthin is cytotoxic selectively against human melanoma cells while sparing normal melanocytes. Mechanistically, Fucoxanthin targets the JAK2/STAT3/BCL‐xL antiapoptotic axis to provoke melanoma cell death. This discovery implicates the potential application of Fucoxanthin as a chemopreventive or therapeutic strategy for melanoma management.

Funder

Ministry of Education

Publisher

Wiley

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