Who knows not where an anemone does wear his sting? Could polypeptides released from the columnar vesicles of Bunodosoma cangicum induce apoptosis in the ZF-L cell line?

Toxicon

Programa de Pós-Graduação em Ciências Fisiológicas - Fisiologia Animal Comparada, Universidade Federal do Rio Grande - FURG, Rio Grande, RS, Brazil; Instituto de Ciências Biológicas, Universidade Federal do Rio Grande - FURG, Rio Grande, RS, Brazil. Electronic address:

Published: December 2016

AI Article Synopsis

  • The tentacles of the sea anemone Bunodosoma cangicum do not have cytotoxic venom, as shown by ultrastructural and cytological evidence.
  • A mixture of biomolecules, likely polypeptides, from its columnar vesicles induces apoptosis in zebrafish cells (ZF-L), confirmed through microscopic and flow cytometric assays.
  • The study identifies novel biologically active molecules in the anemone's vesicles and clarifies that its tentacles exclusively contain spirocytes instead of venom.

Article Abstract

We provide ultrastructural and cytological evidence that the tentacles of the sea anemone Bunodosoma cangicum does not contain cytotoxic venom. However, we show that the stimulated secretion of an apparent mixture of biomolecules containing polypeptides from the columnar vesicles of Bunodosoma cangicum is apparently a potent inducer of apoptosis in the zebrafish cell line, ZF-L. Microscopic fluorescence, cell morphology and flow cytometric assays confirm the apoptotic activity. Crude vesicle venom was partially purified by size exclusion chromatography. PAGE analysis shows that this venom contains low weight polypeptides but no measurable protein. The apoptotic activity is heat labile, and the observed peptides concurrent with this activity have a molecular weight of approximately 2000 Da. This manuscript is the first report of biologically active molecules and peptides associated with columnar vesicles of anemones, and the first to confirm that the tentacles of B. cangicum do not contain cytotoxic venom, and express spirocytes exclusively.

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Source
http://dx.doi.org/10.1016/j.toxicon.2016.10.014DOI Listing

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