Abstract Oxidative stress causes damage to cells by creating reactive oxygen species (ROS) and the overproduction of ROS have been linked to the onset of premature ageing. We previously found that a brap-2 (BRCA1 associated protein 2) mutant significantly increases the expression of phase II detoxification enzymes in C. elegans. An RNAi suppression screen to identify transcription factors involved in the production of gst-4 mRNA in brap-2 worms identified SEM-4 as a potential candidate. Here, we show that knockdown of sem-4 suppresses the activation of gst-4 caused by the mutation in brap-2. We also demonstrate that sem-4 is required for survival upon exposure to oxidative stress and that SEM-4 is required for expression of the transcription factor SKN-1C. These findings identify a novel role for SEM-4 in ROS detoxification by regulating expression of SKN-1C and the phase II detoxification genes. Article Summary Reactive oxygen species have been implicated as a harmful agent in many age-related diseases as well as an important signaling molecule. The transcription factor SKN-1 in C. elegans is an important regulator of reactive oxygen species levels. Here we show that the transcription factor SEM-4 is required to activate the expression of skn-1c and promote phase II detoxification gene expression. These findings identify a novel role for SEM-4 in regulating reactive oxygen species levels.