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关于抗辐射球菌 Dps-1 与双链 DNA 结合的化学计量学。

On the stoichiometry of Deinococcus radiodurans Dps-1 binding to duplex DNA.

机构信息

Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana 70803, USA.

出版信息

Proteins. 2012 Mar;80(3):713-21. doi: 10.1002/prot.23228. Epub 2011 Nov 24.

Abstract

DNA protection during starvation (Dps) proteins, dodecameric assemblies of four-helix bundle subunits, contribute to protection against reactive oxygen species. Deinococcus radiodurans, which is characterized by resistance to DNA damaging agents, encodes two Dps homologs, of which Dps-1 binds DNA with high affinity. DNA binding requires N-terminal extensions preceding the four-helix bundle core. Composed of six Dps-1 dimers, each capable of DNA binding by N-terminal extensions interacting in consecutive DNA major grooves, dodecameric Dps-1 would be predicted to feature six DNA binding sites. Using electrophoretic mobility shift assays and intrinsic tryptophan fluorescence, we show that dodecameric Dps-1 binds 22-bp DNA with a stoichiometry of 1:6, consistent with the existence of six DNA binding sites. The stoichiometry of Dps-1 binding to 26-bp DNA is 1:4, suggesting that two Dps-1 dodecamers can simultaneously occupy opposite faces of this DNA. Mutagenesis of an arginine (Arg132) on the surface of Dps-1 leads to a reduction in DNA binding. Altogether, our data suggest that duplex DNA lies along the dimer interface, interacting with Arg132 and the N-terminal α-helices, and they extend the hexagonal packing model for Dps-DNA assemblies by specifying the basis for occupancy of available DNA binding sites.

摘要

饥饿保护(Dps)蛋白是一种十二聚体结构的四螺旋束亚基,它有助于抵抗活性氧物种的侵害。耐辐射球菌(Deinococcus radiodurans)具有抵抗 DNA 损伤剂的特性,它编码了两种 Dps 同源物,其中 Dps-1 与 DNA 具有高亲和力。DNA 结合需要位于四螺旋束核心之前的 N 端延伸。由六个 Dps-1 二聚体组成,每个二聚体能通过与连续 DNA 大沟相互作用的 N 端延伸结合 DNA,十二聚体 Dps-1 预计将具有六个 DNA 结合位点。通过电泳迁移率变动分析和内源性色氨酸荧光,我们表明十二聚体 Dps-1 以 1:6 的比例与 22 个碱基对的 DNA 结合,这与存在六个 DNA 结合位点一致。Dps-1 与 26 个碱基对 DNA 的结合比例为 1:4,表明两个 Dps-1 十二聚体可以同时占据该 DNA 的相反面。Dps-1 表面精氨酸(Arg132)的突变导致 DNA 结合减少。总之,我们的数据表明,双链 DNA 沿着二聚体界面延伸,与 Arg132 和 N 端α-螺旋相互作用,它们通过指定可用 DNA 结合位点的占用基础,扩展了 Dps-DNA 组装的六边形堆积模型。

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