1. Academic Validation
  2. The pterocarpanquinone LQB-118 inhibits tumor cell proliferation by downregulation of c-Myc and cyclins D1 and B1 mRNA and upregulation of p21 cell cycle inhibitor expression

The pterocarpanquinone LQB-118 inhibits tumor cell proliferation by downregulation of c-Myc and cyclins D1 and B1 mRNA and upregulation of p21 cell cycle inhibitor expression

  • Bioorg Med Chem. 2014 Jun 15;22(12):3115-22. doi: 10.1016/j.bmc.2014.04.025.
Thiago Martino 1 Fernanda C J Magalhães 1 Graça A Justo 1 Marsen G P Coelho 1 Chaquip D Netto 2 Paulo R R Costa 2 Kátia C C Sabino 3
Affiliations

Affiliations

  • 1 Department of Biochemistry, Biomedical Center, Rio de Janeiro State University, Boulevard 28 de Setembro, 87, fundos, 4° andar, PAPC, Rio de Janeiro, RJ CEP 20551-030, Brazil.
  • 2 Laboratory of Bioorganic Chemistry, Research Nucleous of Natural Products, Rio de Janeiro Federal University, Rio de Janeiro, Brazil.
  • 3 Department of Biochemistry, Biomedical Center, Rio de Janeiro State University, Boulevard 28 de Setembro, 87, fundos, 4° andar, PAPC, Rio de Janeiro, RJ CEP 20551-030, Brazil. Electronic address: kasabino2000@yahoo.com.br.
Abstract

The incidence of Cancer grows annually worldwide and in Brazil it is the second cause of death. The search for anti-cancer drugs has then become urgent. It depends on the studies of natural and chemical synthesis products. The antitumor action of LQB-118, a pterocarpanquinone structurally related to lapachol, has been demonstrated to induce mechanisms linked to leukemia cell Apoptosis. This work investigated some mechanisms of the in vitro antitumor action of LQB-118 on prostate Cancer cells. LQB-118 reduced the expression of the c-Myc transcription factor, downregulated the cyclin D1 and cyclin B1 mRNA levels and upregulated the p21 cell cycle inhibitor. These effects resulted in cell cycle arrest in the S and G2/M phases and inhibition of tumor cell proliferation. LQB-118 also induced programmed cell death of the prostate Cancer cells, as evidenced by internucleosomal DNA fragmentation and annexin-V positive cells. Except the cell cycle arrest in the S phase and enhanced c-Myc expression, all the mechanisms observed here for the in vitro antitumor action of LQB-118 were also found for Paclitaxel, a traditional antineoplastic drug. These findings suggest new molecular mechanisms for the LQB-118 in vitro antitumor action.

Keywords

Apoptosis; Cell cycle; Cyclins; LQB-118; PC3 cells; c-Myc.

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