Oxidative Stress

SENP2 participates in DBP-induced oxidative stress injury via mediating Nrf2 de-SUMOylation.

Toxicology in vitro : an international journal published in association with BIBRA

Abstract

Exposure to Di-n-butyl phthalate (DBP) is associated with congenital and acquired defects in the male reproductive system, and DBP-induced oxidative stress plays a critical role in this process. The activation of the Nrf2 antioxidant pathway plays a protective role and its ubiquitin-dependent degradation is well-established. However, the role of Nrf2 SUMOylation remains unclear. This study investigated whether the de-SUMOylating enzyme SENP2 regulates the Nrf2 pathway and mediates DBP-induced damage in Leydig cells. In both DBP-exposed rat testes and TM3 cells, SENP2 expression was significantly downregulated. Molecular assays, including Ni2+-NTA pull-down and co-immunoprecipitation (co-IP), confirmed that Nrf2 is modified by SUMO2/3 at lysine 533 and that SENP2 mediates its de-SUMOylation. Gain- and loss-of-function assays in TM3 cells showed that SENP2 knockdown activated the Nrf2 pathway, facilitated Nrf2 nuclear translocation, upregulated downstream antioxidant proteins, lowered intracellular ROS levels, and partially rescued DBP-impaired testosterone secretion. Conversely, SENP2 overexpression suppressed Nrf2 activity and nuclear translocation, and exacerbated oxidative damage and secretory dysfunction. These findings indicate that SENP2 participates in DBP-induced Leydig cell oxidative injury by modulating the de-SUMOylation of Nrf2. This study provides novel insights into the post-translational regulation of Nrf2 in environmental toxicant-induced reproductive injury, identifying the SENP2/Nrf2 axis as a potential target for intervention.

Key Findings

  • SENP2 expression is significantly downregulated in DBP-exposed rat testes and TM3 Leydig cells.
  • Nrf2 is SUMOylated at lysine 533 by SUMO2/3, and SENP2 mediates its de-SUMOylation.
  • SENP2 knockdown activates the Nrf2 antioxidant pathway, reduces ROS levels, and partially rescues DBP-impaired testosterone secretion, while SENP2 overexpression suppresses Nrf2 activity and worsens oxidative damage.

Clinical Significance

Targeting the SENP2/Nrf2 axis may offer a novel therapeutic strategy to mitigate oxidative stress-induced reproductive toxicity caused by environmental toxicants like DBP.

Citation

Wu Xingyu, Mao Lixin, Jie Yanget al.. SENP2 participates in DBP-induced oxidative stress injury via mediating Nrf2 de-SUMOylation. Toxicology in vitro : an international journal published in association with BIBRA. 2026-Jul-24.

DOI: 10.1016/j.tiv.2026.106278