Department of Chemistry, University of Kentucky, Lexington, Kentucky 40506.
Program in Physical Biology, NICHD, National Institutes of Health, Bethesda, Maryland 20892.
J Biol Chem. 2011 Dec 9;286(49):41985-41992. doi: 10.1074/jbc.M111.295808. Epub 2011 Oct 12.
In spermatogenesis, chromatin histones are replaced by arginine-rich protamines to densely compact DNA in sperm heads. Tight packaging is considered necessary to protect the DNA from damage. To better understand the nature of the forces condensing protamine-DNA assemblies and their dependence on amino acid content, the effect of neutral and negatively charged amino acids on DNA-DNA intermolecular forces was studied using model peptides containing six arginines. We have previously observed that the neutral amino acids in salmon protamine decrease the net attraction between protamine-DNA helices compared with the equivalent homo-arginine peptide. Using osmotic stress coupled with x-ray scattering, we have investigated the component attractive and repulsive forces that determine the net attraction and equilibrium interhelical distance as a function of the chemistry, position, and number of the amino acid inserted. Neutral amino acids inserted into hexa-arginine increase the short range repulsion while only slightly affecting longer range attraction. The amino acid content alone of salmon protamine is enough to rationalize the forces that package DNA in sperm heads. Inserting a negatively charged amino acid into hexa-arginine dramatically weakens the net attraction. Both of these observations have biological implications for protamine-DNA packaging in sperm heads.
在精子发生过程中,组蛋白被富含精氨酸的鱼精蛋白取代,从而使精子头部的 DNA 紧密压缩。紧密的包装被认为是保护 DNA 免受损伤所必需的。为了更好地理解凝聚鱼精蛋白-DNA 组装体的力的性质及其对氨基酸含量的依赖性,使用含有六个精氨酸的模型肽研究了中性和带负电荷的氨基酸对 DNA-DNA 分子间力的影响。我们之前观察到,与等效的同精氨酸肽相比,鲑鱼鱼精蛋白中的中性氨基酸会降低鱼精蛋白-DNA 螺旋之间的净吸引力。我们使用渗透压应激与 X 射线散射相结合的方法,研究了决定净吸引力和平衡螺旋间距离的组成吸引力和排斥力,其功能是氨基酸的化学性质、位置和数量。插入到六精氨酸中的中性氨基酸会增加短程排斥力,而对长程吸引力的影响很小。鲑鱼鱼精蛋白的氨基酸含量本身就足以说明包装精子头部 DNA 的力。将带负电荷的氨基酸插入到六精氨酸中会显著削弱净吸引力。这两个观察结果都对精子头部的鱼精蛋白-DNA 包装具有生物学意义。