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Pesticide Roundup provokes cell division dysfunction at the level of CDK1/cyclin B activation
Julie Marc1, Odile Mulner-Lorillon, Sandrine Boulben
1Station Biologique de Roscoff, Université Pierre et Marie Curie (UFR 937), Centre National de la Recherche Scientifique (CNRS, UMR 7127), BP 74, 29682 Roscoff Cedex, France.
Abstract:
To assess human health risk from environmental chemicals, we have studied the effect on cell cycle regulation of the widely used glyphosate-containing pesticide Roundup. As a model system we have used sea urchin embryonic first divisions following fertilization, which are appropriate for the study of universal cell cycle regulation without interference with transcription. We show that 0.8% Roundup (containing 8 mM glyphosate) induces a delay in the kinetic of the first cell cleavage of sea urchin embryos. The delay is dependent on the concentration of Roundup. The delay in the cell cycle could be induced using increasing glyphosate concentrations (1-10 mM) in the presence of a subthreshold concentration of Roundup 0.2%, while glyphosate alone was ineffective, thus indicating synergy between glyphosate and Roundup formulation products. The effect of Roundup was not lethal and involved a delay in entry into M-phase of the cell cycle, as judged cytologically. Since CDK1/cyclin B regulates universally the M-phase of the cell cycle, we analyzed CDK1/cyclin B activation during the first division of early development. Roundup delayed the activation of CDK1/cyclin B in vivo. Roundup inhibited also the global protein synthetic rate without preventing the accumulation of cyclin B. In summary, Roundup affects cell cycle regulation by delaying activation of the CDK1/cyclin B complex, by synergic effect of glyphosate and formulation products. Considering the universality among species of the CDK1/cyclin B regulator, our results question the safety of glyphosate and Roundup on human health.
Insights
Roundup pesticide exposure delays cell division in sea urchin embryos by affecting CDK1/cyclin B activation. This synergistic effect between glyphosate and formulation products raises concerns about Roundup
Area of Science:
- Environmental toxicology
- Cell biology
- Developmental biology
Background:
- Assessing human health risks from environmental chemicals is crucial.
- Glyphosate-based herbicides, like Roundup, are widely used globally.
- Understanding their impact on fundamental biological processes is essential.
Purpose of the Study:
- To investigate the effects of Roundup on cell cycle regulation.
- To determine the impact of glyphosate and Roundup formulations on early embryonic development.
- To assess potential human health risks associated with Roundup exposure.
Main Methods:
- Utilized sea urchin embryos for studying universal cell cycle regulation.
- Examined the effects of varying concentrations of Roundup and glyphosate on embryonic cell division.
- Analyzed the activation of CDK1/cyclin B complex and global protein synthesis rates.
Main Results:
- Roundup exposure, particularly at 0.8%, significantly delayed the first cell cleavage in sea urchin embryos.
- A synergistic effect was observed between glyphosate and Roundup formulation products, where glyphosate alone was ineffective.
- Roundup delayed the activation of CDK1/cyclin B, a key regulator of M-phase, and inhibited global protein synthesis.
Conclusions:
- Roundup affects fundamental cell cycle regulation by delaying CDK1/cyclin B activation through a synergistic action.
- The observed effects on cell cycle regulation, given the universality of CDK1/cyclin B, raise concerns about the safety of glyphosate and Roundup for human health.
- Further research is warranted to fully elucidate the toxicological profile of Roundup and its components.