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PMID: 42318340 已发表 · epublish 英语

The pterocarpan (+)-PTC modulates cytoskeletal proteins and induces apoptosis in metastatic castration-resistant prostate cancer: a proteomic perspective.

de Brito Vieira Neto J, Moraes de Farias K, Alves Sales SL, Melo VB, Nascimento Macêdo SM, Koscky Paier CR, Bezerra MJ, Moura AA, Carvalho HF, Domingos de Sousa F, Aquino A, de Oliveira Monteiro AC, Martins-de-Souza D, Banwell MG, Miranda Furtado CL, Pessoa C

摘要

Treatment of metastatic, castration-resistant prostate cancer (mCRPC) remains clinically challenging due to tumor heterogeneity and resistance to standard microtubule-targeting agents, such as docetaxel and cabazitaxel. The natural pterocarpan (+)-(6aS,11aS)-2,3,9-trimethoxypterocarpan [(+)-PTC] has previously shown selective cytotoxicity and disruption of bipolar spindle assembly in mCRPC PC-3 cells yet its full mechanism of action and global proteomic impact remain uncharacterized. PC-3 cells were treated with (+)-PTC (2.0 µM or 8.0 µM) for 24 h and assessed by flow cytometry (Annexin V and rhodamine 123) Western blot, and caspase-3/7 luminescence assays. Global proteomic profiling was performed by quantitative LC-MS/MS using a 2D nano-UPLC data-independent acquisition platform with nocodazole (0.25 µM, microtubule depolymerizer) and monastrol (50 µM, Eg5 inhibitor) as comparators. (+)-PTC-induced concentration-dependent apoptosis (19.8% early apoptotic cells at 2.0 µM; 26.1% at 8.0 µM) and progressive mitochondrial membrane depolarization. Western blot and caspase activities assays confirmed upregulation of BAX and caspase-7, consistent with intrinsic pathway activation. Proteomic analysis identified 212 differentially expressed proteins (DEPs) in (+)-PTC-treated cells, with over 80% overlap with nocodazole-treated cells (82% among upregulated and 84% among downregulated proteins), while clustering with monastrol was markedly lower. The top upregulated proteins, TTLL3, ANAPC7, PIK3CA, ARID4B, and COL16A1, are linked to microtubule dynamics and cell cycle regulation; the main downregulated, namely KDM2B, PTOV1, YWHAQ, PSMB6, and PRKCB, are involved in cell survival, protein homeostasis and mitotic checkpoint control. These findings provide proteomic evidence that (+)-PTC interferes with cytoskeletal protein dynamics and promotes apoptosis in mCRPC and so warranting its further investigation as a candidate anti-cancer scaffold.

关键词
apoptosis cytoskeleton proteins prostate cancer proteomics pterocarpans
文献信息
期刊
Frontiers in pharmacology
期刊简称
Front Pharmacol
ISSN
1663-9812
语言
英语
国家/地区
Switzerland
NLM ID
101548923
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