4.7 Article

A Molecular Mechanism to Explain the Nickel-Induced Changes in Protamine-like Proteins and Their DNA Binding Affecting Sperm Chromatin in Mytilus galloprovincialis: An In Vitro Study

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BIOMOLECULES
卷 13, 期 3, 页码 -

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MDPI
DOI: 10.3390/biom13030520

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nickel; spermatozoa; protamine-like; PARP; sperm chromatin; DNA; Mytilus galloprovincialis; nickel molecular mechanisms

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This study investigated the molecular mechanisms of nickel-induced effects on sperm chromatin and protamine-like proteins (PLs) in Mytilus galloprovincialis. The results showed that exposure to nickel led to changes in PLs' electrophoretic behavior and DNA binding ability, with the severity increasing with higher nickel accumulation. Additionally, there was an increase in PARP expression, especially at low doses of nickel exposure.
Nickel is associated with reproductive toxicity, but little is known about the molecular mechanisms of nickel-induced effects on sperm chromatin and protamine-like proteins (PLs). In the present work, we analyzed PLs from Mytilus galloprovincialis by urea-acetic acid polyacrylamide gel electrophoresis (AU-PAGE) and SDS-PAGE and assessed their binding to DNA by Electrophoretic Mobility Shift Assay (EMSA) after exposing mussels to 5, 15, and 35 mu M NiCl2 for 24 h. In addition, a time course of digestion with MNase and release of PLs from sperm nuclei by the NaCl gradient was performed. For all exposure doses, in AU-PAGE, there was an additional migrating band between PL-III and PL-IV, corresponding to a fraction of PLs in the form of peptides detected by SDS-PAGE. Alterations in DNA binding of PLs were observed by EMSA after exposure to 5 and 15 mu M NiCl2, while, at all NiCl2 doses, increased accessibility of MNase to sperm chromatin was found. The latter was particularly relevant at 15 mu M NiCl2, a dose at which increased release of PLII and PLIII from sperm nuclei and the highest value of nickel accumulated in the gonads were also found. Finally, at all exposure doses, there was also an increase in PARP expression, but especially at 5 mu M NiCl2. A possible molecular mechanism for the toxic reproductive effects of nickel in Mytilus galloprovincialis is discussed.

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