Mechanobiology Institute, National University of Singapore, Singapore 117411, Singapore.
Jesse Brown Veterans Administration Medical Center, Chicago, IL 6061, USA.
Nucleic Acids Res. 2018 Nov 2;46(19):10216-10224. doi: 10.1093/nar/gky826.
Heat-stable nucleoid structuring protein (H-NS) plays a crucial role in gene silencing within prokaryotic cells and is important in pathogenesis. It was reported that H-NS silences nearly 5% of the genome, yet the molecular mechanism of silencing is not well understood. Here, we employed a highly-sensitive single-molecule counting approach, and measured the dissociation constant (KD) of H-NS binding to single DNA binding sites. Charged residues in the linker domain of H-NS provided the most significant contribution to DNA binding affinity. Although H-NS was reported to prefer A/T-rich DNA (a feature of pathogenicity islands) over G/C-rich DNA, the dissociation constants obtained from such sites were nearly identical. Using a hairpin unzipping assay, we were able to uncouple non-specific DNA binding steps from nucleation site binding and subsequent polymerization. We propose a model in which H-NS initially engages with non-specific DNA via reasonably high affinity (∼60 nM KD) electrostatic interactions with basic residues in the linker domain. This initial contact enables H-NS to search along the DNA for specific nucleation sites that drive subsequent polymerization and gene silencing.
热稳定核质结构蛋白(H-NS)在原核细胞的基因沉默中发挥着关键作用,并且在发病机制中很重要。据报道,H-NS 沉默了近 5%的基因组,但沉默的分子机制尚不清楚。在这里,我们采用了一种高灵敏度的单分子计数方法,测量了 H-NS 与单个 DNA 结合位点的解离常数(KD)。H-NS 连接域中的带电残基对 DNA 结合亲和力的贡献最大。尽管 H-NS 被报道优先结合富含 A/T 的 DNA(致病性岛的特征)而不是富含 G/C 的 DNA,但从这些位点获得的解离常数几乎相同。使用发夹解链测定法,我们能够将非特异性 DNA 结合步骤与成核位点结合和随后的聚合解耦。我们提出了一个模型,其中 H-NS 通过连接域中的碱性残基与 DNA 进行合理高亲和力(约 60 nM KD)的静电相互作用,从而最初与非特异性 DNA 结合。这种初始接触使 H-NS 能够沿着 DNA 搜索特定的成核位点,从而驱动随后的聚合和基因沉默。