Onconase, an anti-tumor ribonuclease suppresses intracellular oxidative stress

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Abstract

Onconase (ONC), an antitumor ribonuclease from oocytes of a frog Rana pipiens, capable of inducing apoptosis in many cell lines is synergistic with several other anticancer drugs. Since cytotoxic effects of numerous drugs are modulated by reactive oxygen intermediates (ROI), we have studied effects of ONC on the intracellular level of oxidants in several normal cell types as well as tumor cell lines. It is demonstrated for the first time that ONC substantially decreases the content of ROI in all cell lines studied. This effect depends on the ribonucleolytic activity of the enzyme and is due to both, decreased rate of ROI generation and accelerated rate of their degradation. Onconase decreases the mitochondrial trans-membrane potential and consequently, generation of ATP. Simultaneously the enzyme decreases the expression of an antiapoptotic protein Bcl-2, and upregulates the proapoptotic Bax protein. These finding are consistent with the enzyme propensity to induce apoptosis. The observed antioxidant activity of ONC may be an important element of its cyto-toxicity towards cancer cells. The enzyme seems to exert its biological activities by interfering with the redox system of cellular regulation.

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Ardelt, B., Juan, G., Burfeind, P., Salomon, T., Wu, J. M., Hsieh, T. C., … Darzynkiewicz, Z. (2007). Onconase, an anti-tumor ribonuclease suppresses intracellular oxidative stress. International Journal of Oncology, 31(3), 663–669. https://doi.org/10.3892/ijo.31.3.663

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