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Computational Analysis of the Caenorhabditis elegans Germline to Study the Distribution of Nuclei, Proteins, and the Cytoskeleton
Published on: April 19, 2018
Mitochondria and MAPK cascades modulate endosulfan-induced germline apoptosis in Caenorhabditis elegans
Jingjing Wang1,2, Hua Du2, Yaguang Nie2
1School of Environmental Science and Optoelectronic Technology , University of Science and Technology of China , Hefei , Anhui 230026 , P. R. China.
Abstract:
Endosulfan as a new member of persistent organic pollutants has been shown to induce apoptosis in various animal models. However, the mechanism underlying endosulfan-induced apoptosis has not been well elucidated thus far. Caenorhabditis elegans N2 wild type and mutant strains were used in the present study to clarify the roles of the mitochondria, the insulin/insulin-like growth factor-1 (IGF-1) signaling pathway, and mitogen-activated protein kinase (MAPK) cascades in α-endosulfan-induced apoptosis. Our results demonstrated a dose- and time-dependent increase of apoptosis in the meiotic zone of the gonad of C. elegans exposed to graded concentrations of endosulfan. The expression levels of sod-3, localized in the mitochondrial matrix, increased greatly after endosulfan exposure. A significant increase in germ cell apoptosis was observed in abnormal methyl viologen sensitivity-1 (mev-1(kn-1)) mutants (with abnormal mitochondrial respiratory chain complex II and higher ROS levels) compared to that in N2 at equal endosulfan concentrations. We found that the insulin/IGF-1 signaling pathway and its downstream Ras/ERK/MAPK did not participate in the endosulfan-induced apoptosis. However, the apoptosis in the loss-of-function strains of JNK and p38 MAPK signaling pathways was completely or mildly suppressed under endosulfan stress. The apoptotic effects of endosulfan were blocked in the mutants of jnk-1/JNK-MAPK, sek-1/MAP2K, and pmk-1/p38-MAPK, suggesting that these downstream genes play an essential role in endosulfan-induced germ cell apoptosis. In contrast, the mkk-4/MAP2K and nsy-1/MAP3K were only partially involved in the apoptosis induction. Our data provide evidence that endosulfan increases germ cell apoptosis, which is regulated by mitochondrial function, JNK and p38 MAPK cascades. These findings contribute to the understanding of the signal transduction pathways involved in endosulfan-induced apoptosis.
Insights
Endosulfan exposure increases germ cell apoptosis in C. elegans, primarily regulated by mitochondrial function and JNK/p38 MAPK pathways, not the insulin signaling pathway. This research clarifies endosulfan
Area of Science:
- Toxicology
- Cell Biology
- Genetics
Background:
- Endosulfan, a persistent organic pollutant, induces apoptosis, but its mechanism remains unclear.
- Understanding endosulfan's apoptotic pathways is crucial for risk assessment.
Purpose of the Study:
- To elucidate the molecular mechanisms of alpha-endosulfan-induced apoptosis in C. elegans.
- To investigate the roles of mitochondria, insulin/IGF-1 signaling, and MAPK cascades.
Main Methods:
- Utilized C. elegans N2 wild type and mutant strains.
- Assessed apoptosis via dose- and time-dependent studies.
- Analyzed gene expression and utilized knockout strains for specific signaling pathways.
Main Results:
- Endosulfan exposure increased germ cell apoptosis in a dose- and time-dependent manner.
- Mitochondrial dysfunction (mev-1 mutants) exacerbated endosulfan-induced apoptosis.
- JNK and p38 MAPK pathways, but not insulin/IGF-1 signaling, were critical for endosulfan-induced apoptosis.
Conclusions:
- Endosulfan-induced germ cell apoptosis is regulated by mitochondrial function and JNK/p38 MAPK signaling cascades.
- The insulin/IGF-1 pathway is not involved in endosulfan-induced apoptosis.
- Findings clarify signal transduction pathways in endosulfan toxicity.
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