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Toxicological effects and potential reproductive risk of microplastic-induced molecular changes in protamine-like proteins and their DNA binding

Chemico-Biological Interactions 2024 20 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 65 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Gennaro Lettieri, Teresa Chianese, Luigi Rosati Carmela Marinaro, Carmela Marinaro, Teresa Chianese, Teresa Chianese, Gennaro Lettieri, Luigi Rosati Giulia Scarciello, Teresa Chianese, Giulia Scarciello, Marina Piscopo, Gennaro Lettieri, Marina Piscopo, Anna Rita Bianchi, Rosaria Scudiero, Marina Piscopo, Teresa Chianese, Teresa Chianese, Bruno Berman, Teresa Chianese, Teresa Chianese, Teresa Chianese, Luigi Rosati Marina Piscopo, Teresa Chianese, Teresa Chianese, Teresa Chianese, Rosaria Scudiero, Gennaro Lettieri, Marina Piscopo, Carmela Marinaro, Rosaria Scudiero, Luigi Rosati Luigi Rosati Marina Piscopo, Marina Piscopo, Luigi Rosati Anna De Maio, Marina Piscopo, Marina Piscopo, Gennaro Lettieri, Marina Piscopo, Rosaria Scudiero, Luigi Rosati

Summary

When mussels were exposed to polystyrene microplastics at concentrations found in the Mediterranean Sea, changes occurred in their sperm proteins that affect how DNA is packaged and protected. These molecular changes in reproductive cells raise concerns about the potential for microplastic pollution to affect fertility and reproductive success in marine organisms, with possible implications for understanding similar risks in other species.

Polymers
Body Systems

Today, plastic pollution is a widespread problem in all ecosystems and has a particularly severe impact on marine ecosystems and external fertilisers such as the mussel Mytilus galloprovincialis. The present study aims to assess the toxicological reproductive health effects in this organism following exposure to two concentrations of polystyrene microplastics (PS-MPs) (0.5 and 1 μg/L), representative of conditions in the Mediterranean Sea. After exposure, the electrophoretic pattern of protamine-like (PL) proteins, the major basic protein component of Mytilus galloprovincialis sperm chromatin, was analysed. Compared to the unexposed condition, differences were observed by SDS-PAGE and an increased ability of PL to bind and protect DNA from oxidative damage was then measured, particularly for PL from mussels exposed to 1 μg/L PS-MPs. At this dose of PS-MPs, a reduced release of all PLs from the sperm nuclei was also observed, whereas the digestion by micrococcal nuclease did not show any significant differences between the exposed and the unexposed conditions. Finally, the possibility of poly(ADP)-ribosylation of the PLs was investigated. PL-II showed an increase in poly(ADP)-ribosylation after PS-MPs exposure, which may account for the difference in the ability of the PLs to bind DNA. In conclusion, while all the results might suggest a molecular mechanism of gametic plasticity occurring upon exposure of mussels to PS-MPs 1 μg/L, they also indicate that this dose of exposure could be extremely detrimental to the reproductive health of Mytilus galloprovincialis because it could prevent the release of basic nuclear proteins from the sperm DNA at fertilisation.

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