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Published on: November 15, 2013
1-NP hijacks endocrine-metabolic checkpoints and disrupts testicular steroidogenesis by suppressing the
Xin-Xin Zhu1, Wei-Wei Zhang1, Ming-Yue Hao2
1Key Laboratory of Environmental Toxicology of Anhui Higher Education Institutes and Department of Toxicology, School of Public Health, Anhui Medical University, Hefei 230032, China.
Abstract:
1-Nitropyrene (1-NP), a representative reproductive toxicant enriched in nitro-PAHs, is a known reproductive toxicant. Although our previous studies demonstrated that 1-NP impairs testosterone synthesis, its effects on other critical processes in testosterone biosynthesis, particularly cholesterol metabolism, remain unknown. Using in vivo and in vitro models, we investigated 1-NP's effects on cholesterol homeostasis and steroidogenesis. Mice were exposed to 1-NP (0, 1.25, 5 mg/kg), a mouse Leydig tumor cell line (MLTC-1) were treated with 0.1, 1 μM 1-NP along with hCG stimulation. IBMX was used for intervention experiment. Key assays included ELISA, qPCR, Western blot, filipin staining, and cholesterol/testosterone quantification. This study demonstrates that 1-NP exposure significantly depletes intracellular free cholesterol without altering total cholesterol, leading to testosterone reduction. Mechanistically, 1-NP decreases cAMP levels, impairing PKA nuclear translocation and CREB Ser133 phosphorylation, thereby downregulating the cholesterol synthesis rate-limiting enzyme HMGCR at both transcriptional and translational levels. Critically, phosphodiesterase inhibitor IBMX rescues cAMP levels, reverses HMGCR suppression, and restores free cholesterol pools and testosterone synthesis, establishing that 1-NP induces endocrine disruption via a novel cholesterol metabolic pathway. While limitations exist, this work redefines 1-NP toxicity as "metabolic sabotage" of specialized endocrine pathways, providing a framework for signal-pathway-targeted interventions against pollution-associated endocrine disruption.
Insights
1-Nitropyrene (1-NP) disrupts testosterone production by depleting free cholesterol, impacting male reproductive health. This study reveals 1-NP
Area of Science:
- Environmental Toxicology
- Endocrinology
- Reproductive Toxicology
Background:
- 1-Nitropyrene (1-NP) is a reproductive toxicant found in nitro-PAHs.
- Previous studies linked 1-NP to impaired testosterone synthesis.
- The specific impact of 1-NP on cholesterol metabolism in steroidogenesis was unknown.
Purpose of the Study:
- To investigate the effects of 1-NP on cholesterol homeostasis and steroidogenesis.
- To elucidate the mechanisms by which 1-NP affects testosterone production.
- To identify potential intervention strategies for 1-NP-induced endocrine disruption.
Main Methods:
- In vivo (mice) and in vitro (MLTC-1 cells) models were used.
- Exposure to varying doses of 1-NP was administered.
- Key assays included ELISA, qPCR, Western blot, filipin staining, and cholesterol/testosterone quantification.
- Intervention with IBMX (phosphodiesterase inhibitor) was performed.
Main Results:
- 1-NP exposure significantly reduced intracellular free cholesterol but not total cholesterol, leading to decreased testosterone levels.
- 1-NP lowered cAMP levels, inhibiting PKA/CREB signaling and downregulating HMGCR (cholesterol synthesis enzyme).
- IBMX treatment rescued cAMP levels, restored HMGCR expression, and normalized free cholesterol and testosterone levels.
Conclusions:
- 1-NP induces endocrine disruption by interfering with cholesterol metabolism and testosterone biosynthesis.
- The mechanism involves suppression of the cAMP/PKA/CREB pathway, impacting HMGCR.
- This research provides a novel understanding of 1-NP toxicity as
- metabolic sabotage
- and suggests targeted interventions.
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