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Published on: December 21, 2011
Peroxiredoxin 2 regulates PGF2α-induced corpus luteum regression in mice by inhibiting ROS-dependent JNK activation
Sun-Ji Park1, Jung-Hak Kim2, Tae-Shin Kim3
1School of Life Sciences and Biotechnology, BK21 Plus KNU Creative BioResearch Group, Kyungpook National University, Daegu, Republic of Korea; Renal Division, School of medicine, Washington University in St Louis, MO, USA.
Abstract:
Luteal regression is a natural and necessary event to regulate the reproductive process in all mammals. Prostaglandin F2α (PGF2α) is the main factor that causes functional and structural regression of the corpus luteum (CL). It is well known that PGF2α-mediated ROS generation is closely involved in luteal regression. Peroxiredoxin 2 (Prx2) as an antioxidant enzyme plays a protective role against oxidative stress-induced cell death. However, the effect of Prx2 on PGF2α-induced luteal regression has not been reported. Here, we investigated the role of Prx2 in functional and structural CL regression induced by PGF2α-mediated ROS using Prx2-deficient (-/-) mice. We found that PGF2α-induced ROS generation was significantly higher in Prx2-/- MEF cells compared with that in wild-type (WT) cells, which induced apoptosis by activating JNK-mediated apoptotic signaling pathway. Also, PGF2α treatment in the CL derived from Prx2-/- mice promoted the reduction of steroidogenic enzyme expression and the activation of JNK and caspase3. Compared to WT mice, serum progesterone levels and luteal expression of steroidogenic enzymes decreased more rapidly whereas JNK and caspase3 activations were significantly increased in Prx2-/- mice injected with PGF2α. However, the impaired steroidogenesis and PGF2α-induced JNK-dependent apoptosis were rescued by the addition of the antioxidant N-acetyl-L-cysteine (NAC). This is the first study to demonstrate that Prx2 deficiency ultimately accelerated the PGF2α-induced luteal regression through activation of the ROS-dependent JNK pathway. These findings suggest that Prx2 plays a crucial role in preventing accelerated luteal regression via inhibition of the ROS/JNK pathway.
Insights
Peroxiredoxin 2 (Prx2) deficiency accelerates luteal regression by increasing reactive oxygen species (ROS) and activating the JNK pathway. Antioxidant treatment rescues this effect, highlighting Prx2's protective role in corpus luteum function.
Area of Science:
- Reproductive Biology
- Cellular Physiology
- Biochemistry
Background:
- Luteal regression is essential for mammalian reproduction.
- Prostaglandin F2α (PGF2α) induces corpus luteum (CL) regression, involving reactive oxygen species (ROS).
- Peroxiredoxin 2 (Prx2) is an antioxidant enzyme, but its role in luteal regression is unknown.
Purpose of the Study:
- To investigate the role of Prx2 in PGF2α-induced luteal regression.
- To determine if Prx2 deficiency affects ROS generation and apoptotic pathways in the CL.
Main Methods:
- Utilized Prx2-deficient (Prx2-/-) and wild-type (WT) mice.
- Treated CL with PGF2α and assessed ROS generation, apoptosis markers (JNK, caspase3), steroidogenic enzyme expression, and serum progesterone levels.
- Administered N-acetyl-L-cysteine (NAC) as an antioxidant.
Main Results:
- PGF2α-induced ROS generation was higher in Prx2-/- cells, leading to increased JNK activation and apoptosis.
- Prx2 deficiency accelerated luteal regression, reducing steroidogenic enzyme expression and progesterone levels.
- NAC treatment rescued impaired steroidogenesis and JNK-dependent apoptosis in Prx2-/- mice.
Conclusions:
- Prx2 deficiency accelerates PGF2α-induced luteal regression by activating the ROS-dependent JNK pathway.
- Prx2 plays a critical role in preventing accelerated luteal regression by inhibiting the ROS/JNK pathway.
- Targeting Prx2 or ROS pathways may offer strategies for reproductive regulation.
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