Targeting catalase but not peroxiredoxins enhances arsenic trioxide-induced apoptosis in K562 cells

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Abstract

Despite considerable efficacy of arsenic trioxide (As2O 3) in acute promyelocytic leukemia (APL) treatment, other non-APL leukemias, such as chronic myeloid leukemia (CML), are less sensitive to As 2O3 treatment. However, the underlying mechanism is not well understood. Here we show that relative As2O3- resistant K562 cells have significantly lower ROS levels than As 2O3-sensitive NB4 cells. We compared the expression of several antioxidant enzymes in these two cell lines and found that peroxiredoxin 1/2/6 and catalase are expressed at high levels in K562 cells. We further investigated the possible role of peroxirdoxin 1/2/6 and catalase in determining the cellular sensitivity to As2O3. Interestingly, knockdown of peroxiredoxin 1/2/6 did not increase the susceptibility of K562 cells to As2O3. On the contrary, knockdown of catalase markedly enhanced As2O3-induced apoptosis. In addition, we provide evidence that overexpression of BCR/ABL cannot increase the expression of PRDX 1/2/6 and catalase. The current study reveals that the functional role of antioxidant enzymes is cellular context and treatment agents dependent; targeting catalase may represent a novel strategy to improve the efficacy of As2O3 in CML treatment. © 2014 Song et al.

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Song, L. L., Tu, Y. Y., Xia, L., Wang, W. W., Wei, W., Ma, C. M., … Wu, Y. L. (2014). Targeting catalase but not peroxiredoxins enhances arsenic trioxide-induced apoptosis in K562 cells. PLoS ONE, 9(8). https://doi.org/10.1371/journal.pone.0104985

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