Abstract

Ras is a well established modulator of apoptosis. Suppression of protein kinase C (PKC) activity can selectively induce apoptosis in cells expressing a constitutively activated Ras protein. We wished to determine whether reactive oxygen species serve as an effector of Ras-mediated apoptosis. Ras-transformed NIH/3T3 cells contained higher basal levels of intracellular H(2)O(2) compared with normal NIH/3T3 cells, and PKC inhibition up-regulated ROS to 5-fold greater levels in Ras-transformed cells than in normal cells. Treatment with N-acetyl-l-cysteine reduced both the basal and inducible levels of intracellular H(2)O(2) in NIH/3T3-Ras cells and antagonized the induction of apoptosis by PKC inhibition. Culturing NIH/3T3-Ras cells in low oxygen conditions, which prevents ROS generation, also inhibited the apoptotic response to PKC inhibition. These results suggest that reactive oxygen species are necessary as downstream effectors of the Ras-mediated apoptotic response to PKC inhibition. However, the generation of ROS alone is not sufficient to induce apoptosis in Ras-transformed cells because inhibition of cell cycle progression prevented the induction of apoptosis in NIH/3T3-Ras cells without inhibiting the generation of intracellular H(2)O(2) observed after PKC inhibition. These findings suggest that continued cell cycle progression of Ras-transformed cells during PKC inhibition is also necessary for the induction of apoptosis.

Highlights

  • Our laboratory and others (6 – 8) have established Ras as a modulator of apoptosis

  • No loss in cell viability was seen in normal Balb or NIH/3T3 fibroblasts with either 100 or 500 nM phorbol 12-myristate 13-acetate (PMA) treatment. These findings demonstrate that the suppression of protein kinase C (PKC) activity, but not activation of PKC, can trigger cell death in the presence of oncogenic Ras activity

  • We conclude from these experiments that mitosis is not necessary for Ras-mediated apoptosis induced by PKC inhibition, but the results using sodium butyrate or trichostatin A (TsA) suggest that transition through other phases of cell cycle may be important

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Summary

Ras Induces Apoptosis by ROS

Whether ROS mediated apoptosis of Ras-transformed cells in which PKC was inhibited. We report here that the generation of ROS is necessary for Ras to initiate apoptosis when PKC is inhibited. Up-regulation of ROS alone is not sufficient for the induction of apoptosis by PKC. Our studies indicate that cell cycle progression is necessary for Ras-mediated apoptosis to occur, independent of ROS generation

EXPERIMENTAL PROCEDURES
RESULTS
DISCUSSION
Our studies show that HMG can be used to inhibit cellular
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