Cree Laura H, Balhorn Rod, Brewer Laurence R
The Voiland School of Chemical Engineering and Bioengineering, Center for Reproductive Biology, Washington State University, Pullman, WA 99164-2710, USA.
Protein Pept Lett. 2011 Aug;18(8):802-10. doi: 10.2174/092986611795713943.
Single molecule studies of protamine-DNA interactions have characterized the kinetics of protamine binding to DNA and the morphology of the toroidal subunits that comprise sperm chromatin. The results provided by these studies are reviewed, the advantage of using single molecule techniques is discussed, and the implications of the results to the structure, kinetics of toroid formation, and stability of the DNA-protamine complex are described. New measurements of DNA condensation forces induced by the binding of protamine to DNA are also presented. These forces induce a significant tension in constrained segments of DNA and may contribute to the reduction in volume and shaping of the maturing spermatid cell nucleus.
对鱼精蛋白与DNA相互作用的单分子研究已经阐明了鱼精蛋白与DNA结合的动力学以及构成精子染色质的环形亚基的形态。本文综述了这些研究所得出的结果,讨论了使用单分子技术的优势,并描述了这些结果对DNA-鱼精蛋白复合物的结构、环形结构形成动力学以及稳定性的影响。文中还给出了鱼精蛋白与DNA结合所诱导的DNA凝聚力的新测量结果。这些力在DNA的受限片段中产生显著张力,可能有助于成熟精子细胞核体积的减小和形态的形成。