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Structure of the sporulation histidine kinase inhibitor Sda from Bacillus subtilis and insights into its solution state

机译:枯草芽孢杆菌孢子形成组氨酸激酶抑制剂Sda的结构及其溶解状态的见解

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摘要

The crystal structure of the DNA-damage checkpoint inhibitor of sporulation, Sda, from Bacillus subtilis, has been solved by the MAD technique using selenomethionine-substituted protein. The structure closely resembles that previously solved by NMR, as well as the structure of a homologue from Geobacillus stearothermophilus solved in complex with the histidine kinase KinB. The structure contains three molecules in the asymmetric unit. The unusual trimeric arrangement, which lacks simple internal symmetry, appears to be preserved in solution based on an essentially ideal fit to previously acquired scattering data for Sda in solution. This interpretation contradicts previous findings that Sda was monomeric or dimeric in solution. This study demonstrates the difficulties that can be associated with the characterization of small proteins and the value of combining multiple biophysical techniques. It also emphasizes the importance of understanding the physical principles behind these techniques and therefore their limitations.
机译:枯草芽孢杆菌的破损DNA损伤检查点抑制剂Sda的晶体结构已通过使用硒代蛋氨酸取代的蛋白质的MAD技术解决。该结构非常类似于先前通过NMR解析的结构,以及与组氨酸激酶KinB复杂地解析的嗜热脂肪地芽孢杆菌同源物的结构。该结构在不对称单元中包含三个分子。缺乏简单内部对称性的异常三聚体排列似乎是基于对先前获取的溶液中Sda散射数据的基本理想拟合而保留在溶液中的。这种解释与先前的发现相反,即Sda在溶液中为单体或二聚体。这项研究证明了可能与小蛋白的表征以及多种生物物理技术结合的价值有关的困难。它还强调了理解这些技术背后的物理原理及其局限性的重要性。

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