Autophagy 2015-01-01

PAWR-mediated suppression of BCL2 promotes switching of 3-azido withaferin A (3-AWA)-induced autophagy to apoptosis in prostate cancer cells.

Bilal Rah, Reyaz ur Rasool, Debasis Nayak, Syed Khalid Yousuf, Debaraj Mukherjee, Lekha Dinesh Kumar, Anindya Goswami

Index: Autophagy 11(2) , 314-31, (2015)

Full Text: HTML

Abstract

An active medicinal component of plant origin with an ability to overcome autophagy by inducing apoptosis should be considered a therapeutically active lead pharmacophore to control malignancies. In this report, we studied the effect of concentration-dependent 3-AWA (3-azido withaferin A) sensitization to androgen-independent prostate cancer (CaP) cells which resulted in a distinct switching of 2 interrelated conserved biological processes, i.e. autophagy and apoptosis. We have observed 3 distinct parameters which are hallmarks of autophagy in our studies. First, a subtoxic concentration of 3-AWA resulted in an autophagic phenotype with an elevation of autophagy markers in prostate cancer cells. This led to a massive accumulation of MAP1LC3B and EGFP-LC3B puncta coupled with gradual degradation of SQSTM1. Second, higher toxic concentrations of 3-AWA stimulated ER stress in CaP cells to turn on apoptosis within 12 h by elevating the expression of the proapoptotic protein PAWR, which in turn suppressed the autophagy-related proteins BCL2 and BECN1. This inhibition of BECN1 in CaP cells, leading to the disruption of the BCL2-BECN1 interaction by overexpressed PAWR has not been reported so far. Third, we provide evidence that pawr-KO MEFs exhibited abundant autophagy signs even at toxic concentrations of 3-AWA underscoring the relevance of PAWR in switching of autophagy to apoptosis. Last but not least, overexpression of EGFP-LC3B and DS-Red-BECN1 revealed a delayed apoptosis turnover at a higher concentration of 3-AWA in CaP cells. In summary, this study provides evidence that 3-AWA is a strong anticancer candidate to abrogate protective autophagy. It also enhanced chemosensitivity by sensitizing prostate cancer cells to apoptosis through induction of PAWR endorsing its therapeutic potential.


Related Compounds

  • Staurosporine
  • Triton X-100
  • PMSF
  • Leupeptin hydrochl...
  • DL-Dithiothreitol
  • Paraformaldehyde
  • Tween 20
  • Sodium deoxycholat...

Related Articles:

TAp73 promotes cell survival upon genotoxic stress by inhibiting p53 activity.

2014-09-30

[Oncotarget 5(18) , 8107-22, (2014)]

Unmethylated CpG motifs in the L. donovani DNA regulate TLR9-dependent delay of programmed cell death in macrophages.

2015-02-01

[J. Leukoc. Biol. 97(2) , 363-78, (2015)]

Higher vulnerability and stress sensitivity of neuronal precursor cells carrying an alpha-synuclein gene triplication.

2014-01-01

[PLoS ONE 9(11) , e112413, (2014)]

TRPM7 regulates proliferation and polarisation of macrophages.

2014-11-01

[J. Cell Sci. 127(21) , 4561-6, (2014)]

Caspase-dependent cell death-associated release of nucleosome and damage-associated molecular patterns.

2014-01-01

[Cell Death Dis. 5 , e1494, (2014)]

More Articles...