Literature DB >> 23963538

Activation of polyamine catabolic enzymes involved in diverse responses against epibrassinolide-induced apoptosis in LNCaP and DU145 prostate cancer cell lines.

Pinar Obakan1, Elif Damla Arisan, Annarica Calcabrini, Enzo Agostinelli, Sehnaz Bolkent, Narçin Palavan-Unsal.   

Abstract

Epibrassinolide (EBR) is a biologically active compound of the brassinosteroids, steroid-derived plant growth regulator family. Generally, brassinosteroids are known for their cell expansion and cell division-promoting roles. Recently, EBR was shown as a potential apoptotic inducer in various cancer cells without affecting the non-tumor cell growth. Androgen signaling controls cell proliferation through the interaction with the androgen receptor (AR) in the prostate gland. Initially, the development of prostate cancer is driven by androgens. However, in later stages, a progress to the androgen-independent stage is observed, resulting in metastatic prostate cancer. The androgen-responsive or -irresponsive cells are responsible for tumor heterogeneity, which is an obstacle to effective anti-cancer therapy. Polyamines are amine-derived organic compounds, known for their role in abnormal cell proliferation as well as during malignant transformation. Polyamine catabolism-targeting agents are being investigated against human cancers. Many chemotherapeutic agents including polyamine analogs have been demonstrated to induce polyamine catabolism that depletes polyamine levels and causes apoptosis in tumor models. In our study, we aimed to investigate the mechanism of apoptotic cell death induced by EBR, related with polyamine biosynthetic and catabolic pathways in LNCaP (AR+), DU145 (AR-) prostate cancer cell lines and PNT1a normal prostate epithelial cell line. Induction of apoptotic cell death was observed in prostate cancer cell lines after EBR treatment. In addition, EBR induced the decrease of intracellular polyamine levels, accompanied by a significant ornithine decarboxylase (ODC) down-regulation in each prostate cancer cell and also modulated ODC antizyme and antizyme inhibitor expression levels only in LNCaP cells. Catabolic enzymes SSAT and PAO expression levels were up-regulated in both cell lines; however, the specific SSAT and PAO siRNA treatments prevented the EBR-induced apoptosis only in LNCaP (AR+) cells. In a similar way, MDL 72,527, the specific PAO and SMO inhibitor, co-treatment with EBR during 24 h, reduced the formation of cleaved fragments of PARP in LNCaP (AR+) cells.

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Year:  2013        PMID: 23963538     DOI: 10.1007/s00726-013-1574-1

Source DB:  PubMed          Journal:  Amino Acids        ISSN: 0939-4451            Impact factor:   3.520


  4 in total

1.  Reduction of oxidative stress and ornithine decarboxylase expression in a human prostate cancer cell line PC-3 by a combined treatment with α-tocopherol and naringenin.

Authors:  Piera Torricelli; Antonia Concetta Elia; Gabriele Magara; Giordana Feriotto; Cinzia Forni; Ilaria Borromeo; Angelo De Martino; Claudio Tabolacci; Carlo Mischiati; Simone Beninati
Journal:  Amino Acids       Date:  2021-01-04       Impact factor: 3.520

2.  SILAC-Based Mass Spectrometry Analysis Reveals That Epibrassinolide Induces Apoptosis via Activating Endoplasmic Reticulum Stress in Prostate Cancer Cells.

Authors:  Pinar Obakan; Carlos Barrero; Ajda Coker-Gurkan; Elif Damla Arisan; Salim Merali; Narcin Palavan-Unsal
Journal:  PLoS One       Date:  2015-09-09       Impact factor: 3.240

3.  Epibrassinolide activates AKT to trigger autophagy with polyamine metabolism in SW480 and DLD-1 colon cancer cell lines.

Authors:  Kaan Adacan; Pınar Obakan Yerlİkaya
Journal:  Turk J Biol       Date:  2020-12-14

Review 4.  Therapeutic Potential of Brassinosteroids in Biomedical and Clinical Research.

Authors:  Sukhmeen Kaur Kohli; Abhay Bhardwaj; Vinay Bhardwaj; Anket Sharma; Namarta Kalia; Marco Landi; Renu Bhardwaj
Journal:  Biomolecules       Date:  2020-04-09
  4 in total

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