Department of Agricultural Chemistry, National Taiwan University, Taipei, Taiwan.
Nucleic Acids Res. 2011 Aug;39(15):6764-74. doi: 10.1093/nar/gkr283. Epub 2011 May 5.
Organisms growing at elevated temperatures face the challenge of maintaining the integrity of their genetic materials. Archaea possess unique chromatin proteins for gene organization and information processing. We present the solution structure of Sso7c4 from Sulfolobus solfataricus, which has a homodimeric DNA-binding fold forming a swapped β-loop-β 'Tai-Chi' topology. The fold is reminiscent of the N-terminal DNA-binding domain of AbrB and MazE. In addition, several amide resonances in the heteronuclear single quantum coherence spectra of Sso7c4 are shifted and broadened with the addition of small amounts of duplex DNA oligomers. The locations of the corresponding amides in the Sso7c4 structure define its DNA-interacting surface. NMR spectra of DNA titrated with the protein further indicated that Sso7c4 interacts with DNA in the major groove. Taken together, a plausible model for the Sso7c4-DNA complex is presented, in which the DNA double helix is curved around the protein dimer.
在高温下生长的生物面临着维持其遗传物质完整性的挑战。古菌拥有独特的染色质蛋白,用于基因组织和信息处理。我们展示了来自嗜热硫磺酸球菌的 Sso7c4 的溶液结构,它具有形成交换β环-β '太极'拓扑结构的同源二聚体 DNA 结合折叠。该结构类似于 AbrB 和 MazE 的 N 端 DNA 结合结构域。此外,在 Sso7c4 的异核单量子相干光谱中,随着少量双链 DNA 寡聚物的加入,几个酰胺共振峰发生了位移和展宽。Sso7c4 结构中相应酰胺的位置定义了其与 DNA 的相互作用表面。用该蛋白滴定 DNA 的 NMR 谱进一步表明,Sso7c4 与 DNA 主沟相互作用。综上所述,提出了 Sso7c4-DNA 复合物的合理模型,其中 DNA 双螺旋围绕蛋白二聚体弯曲。