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Crenarchaeal chromatin proteins Cren7 and Sul7 compact DNA by inducing rigid bends

机译:Crenarchaeal染色质蛋白Cren7和Sul7通过诱导刚性弯曲来压缩DNA

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摘要

Archaeal chromatin proteins share molecular and functional similarities with both bacterial and eukaryotic chromatin proteins. These proteins play an important role in functionally organizing the genomic DNA into a compact nucleoid. Cren7 and Sul7 are two crenarchaeal nucleoid-associated proteins, which are structurally homologous, but not conserved at the sequence level. Co-crystal structures have shown that these two proteins induce a sharp bend on binding to DNA. In this study, we have investigated the architectural properties of these proteins using atomic force microscopy, molecular dynamics simulations and magnetic tweezers. We demonstrate that Cren7 and Sul7 both compact DNA molecules to a similar extent. Using a theoretical model, we quantify the number of individual proteins bound to the DNA as a function of protein concentration and show that forces up to 3.5 pN do not affect this binding. Moreover, we investigate the flexibility of the bending angle induced by Cren7 and Sul7 and show that the protein–DNA complexes differ in flexibility from analogous bacterial and eukaryotic DNA-bending proteins.
机译:古细菌染色质蛋白与细菌和真核染色质蛋白都具有分子和功能相似性。这些蛋白质在功能上将基因组DNA组织成紧密的核仁中起着重要作用。 Cren7和Sul7是两个与crenarchaeal核苷相关的蛋白,在结构上是同源的,但在序列水平上并不保守。共晶体结构表明,这两种蛋白质在与DNA结合时引起急剧的弯曲。在这项研究中,我们使用原子力显微镜,分子动力学模拟和磁镊子研究了这些蛋白质的结构特性。我们证明,Cren7和Sul7都以相似的程度压缩DNA分子。使用理论模型,我们可以量化结合到DNA上的单个蛋白质的数量,作为蛋白质浓度的函数,并显示高达3.5 pN的力不会影响这种结合。此外,我们研究了由Cren7和Sul7诱导的弯曲角的柔性,并表明蛋白质-DNA复合物的柔性与类似的细菌和真核DNA弯曲蛋白不同。

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