Cargando…

Proteomics, Transcriptomics, and Phosphoproteomics Reveal the Mechanism of Talaroconvolutin-A Suppressing Bladder Cancer via Blocking Cell Cycle and Triggering Ferroptosis

Talaroconvolutin-A (TalaA) is a compound from the endophytic fungus T. convolutispora of the Chinese herbal medicine Panax notoginseng. Whether TalaA exerts anticancer activity in bladder cancer remains unknown. Using CCK8 assay, EdU staining, crystal violet staining, flow cytometry, living/dead cel...

Descripción completa

Detalles Bibliográficos
Autores principales: Xia, Yong, Xiang, Longquan, Yao, Ming, Ai, Zhiying, Yang, Wei, Guo, Jianhua, Fan, Shuhao, Liu, Ning, Yang, Xiaolong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10696259/
http://dx.doi.org/10.1016/j.mcpro.2023.100672
_version_ 1785154533971722240
author Xia, Yong
Xiang, Longquan
Yao, Ming
Ai, Zhiying
Yang, Wei
Guo, Jianhua
Fan, Shuhao
Liu, Ning
Yang, Xiaolong
author_facet Xia, Yong
Xiang, Longquan
Yao, Ming
Ai, Zhiying
Yang, Wei
Guo, Jianhua
Fan, Shuhao
Liu, Ning
Yang, Xiaolong
author_sort Xia, Yong
collection PubMed
description Talaroconvolutin-A (TalaA) is a compound from the endophytic fungus T. convolutispora of the Chinese herbal medicine Panax notoginseng. Whether TalaA exerts anticancer activity in bladder cancer remains unknown. Using CCK8 assay, EdU staining, crystal violet staining, flow cytometry, living/dead cell staining, and Western blotting, we studied the anticancer activity of TalaA in vitro. Moreover, we performed xenograft tumor implantation. The antitumor effects were evaluated through H&E and immunohistochemistry staining. Proteomics was conducted to detect changes in the protein profile; transcriptomics was performed to detect changes in mRNA abundance; phosphoproteomics was used to detect changes in protein phosphorylation. TalaA inhibited tumor cell proliferation, DNA replication, and colony formation in a dose-dependent manner in bladder cancer cells. The IC(50) values of TalaA on SW780 and UM-UC-3 cells were 5.7 and 8.2 μM, respectively. TalaA (6.0 mg/kg) significantly repressed the growth of xenografted tumors and did not affect the body weight nor cause obvious hepatorenal toxicity. TalaA arrested the cell cycle by downregulating cyclinA2, cyclinB1, and AURKB and upregulating p21/CIP. TalaA also elevated intracellular reactive oxygen species and upregulated transferrin and heme oxygenase 1 to induce ferroptosis. Moreover, TalaA was able to bind to MAPKs (MAPK1, MAPK8, and MAPK14) to inhibit the phosphorylation of ∗SP∗ motif of transcription regulators. This study revealed that TalaA inhibited bladder cancer by arresting cell cycle to suppress proliferation and triggering ferroptosis to cause cell death. Conclusively, TalaA would be a potential candidate for treating bladder cancer by targeting MAPKs, suppressing the cell cycle, and inducing ferroptosis.
format Online
Article
Text
id pubmed-10696259
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-106962592023-12-06 Proteomics, Transcriptomics, and Phosphoproteomics Reveal the Mechanism of Talaroconvolutin-A Suppressing Bladder Cancer via Blocking Cell Cycle and Triggering Ferroptosis Xia, Yong Xiang, Longquan Yao, Ming Ai, Zhiying Yang, Wei Guo, Jianhua Fan, Shuhao Liu, Ning Yang, Xiaolong Mol Cell Proteomics Research Talaroconvolutin-A (TalaA) is a compound from the endophytic fungus T. convolutispora of the Chinese herbal medicine Panax notoginseng. Whether TalaA exerts anticancer activity in bladder cancer remains unknown. Using CCK8 assay, EdU staining, crystal violet staining, flow cytometry, living/dead cell staining, and Western blotting, we studied the anticancer activity of TalaA in vitro. Moreover, we performed xenograft tumor implantation. The antitumor effects were evaluated through H&E and immunohistochemistry staining. Proteomics was conducted to detect changes in the protein profile; transcriptomics was performed to detect changes in mRNA abundance; phosphoproteomics was used to detect changes in protein phosphorylation. TalaA inhibited tumor cell proliferation, DNA replication, and colony formation in a dose-dependent manner in bladder cancer cells. The IC(50) values of TalaA on SW780 and UM-UC-3 cells were 5.7 and 8.2 μM, respectively. TalaA (6.0 mg/kg) significantly repressed the growth of xenografted tumors and did not affect the body weight nor cause obvious hepatorenal toxicity. TalaA arrested the cell cycle by downregulating cyclinA2, cyclinB1, and AURKB and upregulating p21/CIP. TalaA also elevated intracellular reactive oxygen species and upregulated transferrin and heme oxygenase 1 to induce ferroptosis. Moreover, TalaA was able to bind to MAPKs (MAPK1, MAPK8, and MAPK14) to inhibit the phosphorylation of ∗SP∗ motif of transcription regulators. This study revealed that TalaA inhibited bladder cancer by arresting cell cycle to suppress proliferation and triggering ferroptosis to cause cell death. Conclusively, TalaA would be a potential candidate for treating bladder cancer by targeting MAPKs, suppressing the cell cycle, and inducing ferroptosis. American Society for Biochemistry and Molecular Biology 2023-10-21 /pmc/articles/PMC10696259/ http://dx.doi.org/10.1016/j.mcpro.2023.100672 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research
Xia, Yong
Xiang, Longquan
Yao, Ming
Ai, Zhiying
Yang, Wei
Guo, Jianhua
Fan, Shuhao
Liu, Ning
Yang, Xiaolong
Proteomics, Transcriptomics, and Phosphoproteomics Reveal the Mechanism of Talaroconvolutin-A Suppressing Bladder Cancer via Blocking Cell Cycle and Triggering Ferroptosis
title Proteomics, Transcriptomics, and Phosphoproteomics Reveal the Mechanism of Talaroconvolutin-A Suppressing Bladder Cancer via Blocking Cell Cycle and Triggering Ferroptosis
title_full Proteomics, Transcriptomics, and Phosphoproteomics Reveal the Mechanism of Talaroconvolutin-A Suppressing Bladder Cancer via Blocking Cell Cycle and Triggering Ferroptosis
title_fullStr Proteomics, Transcriptomics, and Phosphoproteomics Reveal the Mechanism of Talaroconvolutin-A Suppressing Bladder Cancer via Blocking Cell Cycle and Triggering Ferroptosis
title_full_unstemmed Proteomics, Transcriptomics, and Phosphoproteomics Reveal the Mechanism of Talaroconvolutin-A Suppressing Bladder Cancer via Blocking Cell Cycle and Triggering Ferroptosis
title_short Proteomics, Transcriptomics, and Phosphoproteomics Reveal the Mechanism of Talaroconvolutin-A Suppressing Bladder Cancer via Blocking Cell Cycle and Triggering Ferroptosis
title_sort proteomics, transcriptomics, and phosphoproteomics reveal the mechanism of talaroconvolutin-a suppressing bladder cancer via blocking cell cycle and triggering ferroptosis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10696259/
http://dx.doi.org/10.1016/j.mcpro.2023.100672
work_keys_str_mv AT xiayong proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis
AT xianglongquan proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis
AT yaoming proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis
AT aizhiying proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis
AT yangwei proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis
AT guojianhua proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis
AT fanshuhao proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis
AT liuning proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis
AT yangxiaolong proteomicstranscriptomicsandphosphoproteomicsrevealthemechanismoftalaroconvolutinasuppressingbladdercancerviablockingcellcycleandtriggeringferroptosis