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大肠杆菌 Primosomal PriB 蛋白与单链 DNA 的相互作用。化学计量学、固有亲和力、协同性和碱基特异性。

Interactions of the Escherichia coli primosomal PriB protein with the single-stranded DNA. Stoichiometries, intrinsic affinities, cooperativities, and base specificities.

机构信息

Department of Biochemistry and Molecular Biology, University of Texas Medical Branch at Galveston, 301 University Boulevard, Galveston, TX 77555-1053, USA.

出版信息

J Mol Biol. 2010 Apr 23;398(1):8-25. doi: 10.1016/j.jmb.2010.02.009. Epub 2010 Feb 12.

Abstract

Quantitative analysis of the interactions of the Escherichia coli primosomal PriB protein with a single-stranded DNA was done using quantitative fluorescence titration, photocrosslinking, and analytical ultracentrifugation techniques. Stoichiometry studies were done with a series of etheno-derivatives of single-stranded (ss) DNA oligomers. Interactions with the unmodified nucleic acids were studied, using the macromolecular competition titration (MCT) method. The total site-size of the PriB dimer-ssDNA complex, i.e. the maximum number of nucleotides occluded by the PriB dimer in the complex, is 12+/-1 nt. The protein has a single DNA-binding site, which is located centrally within the dimer and has a functionally homogeneous structure. The stoichiometry and photocrosslinking data show that only a single monomer of the PriB dimer engages in interactions with the nucleic acid. The analysis of the PriB binding to long oligomers was done using a statistical thermodynamic model that takes into account the overlap of potential binding sites and cooperative interactions. The PriB dimer binds the ssDNA with strong positive cooperativity. Both the intrinsic affinity and cooperative interactions are accompanied by a net ion release, with anions participating in the ion exchange process. The intrinsic binding process is an entropy-driven reaction, suggesting strongly that the DNA association induces a large conformational change in the protein. The PriB protein shows a dramatically strong preference for the homo-pyrimidine oligomers with an intrinsic affinity higher by about three orders of magnitude, as compared to the homo-purine oligomers. The significance of these results for PriB protein activity is discussed.

摘要

采用定量荧光滴定、光交联和分析超速离心技术,对大肠杆菌起始 PriB 蛋白与单链 DNA 的相互作用进行了定量分析。利用一系列单链(ss)DNA 寡核苷酸的乙撑衍生物进行了计量研究。使用大分子竞争滴定(MCT)方法研究了与未修饰核酸的相互作用。PriB 二聚体-ssDNA 复合物的总结合位大小,即复合物中被 PriB 二聚体封闭的核苷酸最大数量为 12+/-1nt。该蛋白具有一个单一的 DNA 结合位点,位于二聚体的中心,具有功能均匀的结构。计量和光交联数据表明,只有 PriB 二聚体的单个单体与核酸相互作用。使用统计热力学模型分析了 PriB 与长寡核苷酸的结合,该模型考虑了潜在结合位点的重叠和协同相互作用。PriB 二聚体与 ssDNA 具有强正协同性结合。内在亲和力和协同相互作用都伴随着净离子释放,阴离子参与离子交换过程。内在结合过程是一个熵驱动的反应,这强烈表明 DNA 缔合会导致蛋白质发生大的构象变化。PriB 蛋白对同源嘧啶寡核苷酸表现出极强的偏好性,其内在亲和力比同源嘌呤寡核苷酸高约三个数量级。讨论了这些结果对 PriB 蛋白活性的意义。

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