Department of Biology, University of Naples Federico II, Via Cinthia, 21, 80126 Naples, Italy.
Department of Precision Medicine, School of Medicine, University of Campania "Luigi Vanvitelli", Via Luigi de Crecchio, 80138 Naples, Italy.
Biomolecules. 2023 Mar 12;13(3):520. doi: 10.3390/biom13030520.
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 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 µM NiCl 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 µM NiCl, while, at all NiCl doses, increased accessibility of MNase to sperm chromatin was found. The latter was particularly relevant at 15 µM NiCl, 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 µM NiCl. A possible molecular mechanism for the toxic reproductive effects of nickel in is discussed.
镍与生殖毒性有关,但人们对镍诱导精子染色质和鱼精蛋白样蛋白(PLs)的分子机制知之甚少。在本工作中,我们通过尿素-醋酸聚丙烯酰胺凝胶电泳(AU-PAGE)和 SDS-PAGE 分析了贻贝中的 PLs,并在将贻贝暴露于 5、15 和 35 µM NiCl 24 h 后,通过电泳迁移率变动分析(EMSA)评估了它们与 DNA 的结合。此外,还进行了 MNase 消化的时间过程以及 NaCl 梯度从精子核中释放 PLs 的实验。对于所有暴露剂量,在 AU-PAGE 中,PL-III 和 PL-IV 之间出现了一个额外的迁移带,对应于 SDS-PAGE 检测到的肽形式的 PL 部分。在暴露于 5 和 15 µM NiCl 后,通过 EMSA 观察到 PLs 与 DNA 结合的改变,而在所有 NiCl 剂量下,发现 MNase 对精子染色质的可及性增加。在 15 µM NiCl 下尤为明显,在该剂量下还发现了 PLII 和 PLIII 从精子核中释放增加,以及性腺中镍积累的最高值。最后,在所有暴露剂量下,PARP 表达也增加,但在 5 µM NiCl 下尤其增加。讨论了镍对贻贝生殖毒性的可能分子机制。