Quintanilla-Vega B, Hoover D J, Bal W, Silbergeld E K, Waalkes M P, Anderson L D
National Cancer Institute at the National Institute of Environmental Health Sciences, Research Triangle Park, NC 27709, USA.
Chem Res Toxicol. 2000 Jul;13(7):594-600. doi: 10.1021/tx000017v.
During spermatogenesis, histones are replaced by protamines, which condense and protect sperm DNA. In humans, zinc contributes to sperm chromatin stability and binds to protamine P2 (HP2). Chemical interactions with nuclear protamines, which prevent normal sperm chromatin condensation, may induce changes in the sperm genome and thus affect fertility and offspring development. Since lead has a high affinity for zinc-containing proteins, we investigated lead interactions with HP2 as a novel mechanism of its toxicity to sperm. UV/vis and CD spectroscopy results indicated that HP2 binds Pb(2+) at two different sites, causing a conformational change in the protein. They also provided evidence that thiol groups are primarily involved in Zn(2+) and Pb(2+) binding to HP2 and that HP2 may have additional binding sites for Pb(2+) not related to Zn(2+). HP2 affinities for Pb(2+) and Zn(2+) were very similar, suggesting that Pb(2+) can compete with or replace Zn(2+) in HP2 in vivo. This interaction of lead with HP2 resulted in a dose-dependent decrease in the extent of HP2-DNA binding, although lead interaction with DNA also contributed to this effect. Therefore, the ability of lead to decrease the level of HP2-DNA interaction may result in alterations to sperm chromatin condensation, and thus in reduced fertility.
在精子发生过程中,组蛋白被鱼精蛋白取代,鱼精蛋白可使精子DNA浓缩并起到保护作用。在人类中,锌有助于维持精子染色质的稳定性,并与鱼精蛋白P2(HP2)结合。与核鱼精蛋白发生化学相互作用会阻止精子染色质正常浓缩,进而可能引发精子基因组的变化,从而影响生育能力和子代发育。由于铅对含锌蛋白具有较高的亲和力,我们研究了铅与HP2的相互作用,将其作为铅对精子产生毒性的一种新机制。紫外/可见光谱和圆二色光谱结果表明,HP2在两个不同位点结合Pb(2+),导致蛋白质构象发生变化。这些结果还证明,巯基主要参与Zn(2+)和Pb(2+)与HP2的结合,并且HP2可能存在与Zn(2+)无关的额外Pb(2+)结合位点。HP2对Pb(2+)和Zn(2+)的亲和力非常相似,这表明在体内Pb(2+)可以与HP2中的Zn(2+)竞争或取代Zn(2+)。铅与HP2的这种相互作用导致HP2-DNA结合程度呈剂量依赖性降低,尽管铅与DNA的相互作用也对此有影响。因此,铅降低HP2-DNA相互作用水平的能力可能导致精子染色质浓缩发生改变,进而导致生育能力下降。