Department of Biochemistry and Biophysics, Arrhenius Laboratories for Natural Sciences, Stockholm University, SE-10691 Stockholm, Sweden and Department of Molecular Biosciences, The Wenner-Gren Institute, Arrhenius Laboratories for Natural Sciences, Stockholm University, SE-10691 Stockholm, Sweden.
Nucleic Acids Res. 2014 Feb;42(4):2725-35. doi: 10.1093/nar/gkt1119. Epub 2013 Nov 19.
The Cox protein from bacteriophage P2 is a small multifunctional DNA-binding protein. It is involved in site-specific recombination leading to P2 prophage excision and functions as a transcriptional repressor of the P2 Pc promoter. Furthermore, it transcriptionally activates the unrelated, defective prophage P4 that depends on phage P2 late gene products for lytic growth. In this article, we have investigated the structural determinants to understand how P2 Cox performs these different functions. We have solved the structure of P2 Cox to 2.4 Å resolution. Interestingly, P2 Cox crystallized in a continuous oligomeric spiral with its DNA-binding helix and wing positioned outwards. The extended C-terminal part of P2 Cox is largely responsible for the oligomerization in the structure. The spacing between the repeating DNA-binding elements along the helical P2 Cox filament is consistent with DNA binding along the filament. Functional analyses of alanine mutants in P2 Cox argue for the importance of key residues for protein function. We here present the first structure from the Cox protein family and, together with previous biochemical observations, propose that P2 Cox achieves its various functions by specific binding of DNA while wrapping the DNA around its helical oligomer.
噬菌体 P2 的 Cox 蛋白是一种小型多功能 DNA 结合蛋白。它参与导致 P2 前噬菌体切除的位点特异性重组,并作为 P2 Pc 启动子的转录阻遏物发挥作用。此外,它还转录激活不相关的、有缺陷的 P4 噬菌体,该噬菌体依赖噬菌体 P2 的晚期基因产物进行裂解生长。在本文中,我们研究了结构决定因素,以了解 P2 Cox 如何执行这些不同的功能。我们已经解决了 P2 Cox 的结构到 2.4 Å 的分辨率。有趣的是,P2 Cox 以连续的寡聚螺旋形式结晶,其 DNA 结合螺旋和翼向外定位。P2 Cox 的扩展 C 末端部分在结构中主要负责寡聚化。沿螺旋 P2 Cox 丝状排列的重复 DNA 结合元件之间的间距与沿丝状 DNA 的结合一致。P2 Cox 中的丙氨酸突变体的功能分析表明,关键残基对于蛋白质功能很重要。我们在这里展示了 Cox 蛋白家族的第一个结构,并结合以前的生化观察结果,提出 P2 Cox 通过特异性结合 DNA 而缠绕 DNA 围绕其螺旋寡聚体来实现其各种功能。