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RNA聚合酶δ亚基N端结构域的X射线结构与核磁共振结构对比

X-ray vs. NMR structure of N-terminal domain of δ-subunit of RNA polymerase.

作者信息

Demo Gabriel, Papoušková Veronika, Komárek Jan, Kadeřávek Pavel, Otrusinová Olga, Srb Pavel, Rabatinová Alžbeta, Krásný Libor, Žídek Lukáš, Sklenář Vladimír, Wimmerová Michaela

机构信息

National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Kamenice 5/A4, 62500 Brno, Czech Republic; Central European Institute of Technology-CEITEC, Masaryk University, Kamenice 5/A4, 62500 Brno, Czech Republic.

Central European Institute of Technology-CEITEC, Masaryk University, Kamenice 5/A4, 62500 Brno, Czech Republic.

出版信息

J Struct Biol. 2014 Aug;187(2):174-186. doi: 10.1016/j.jsb.2014.06.001. Epub 2014 Jun 14.

Abstract

The crystal structure of the N-terminal domain of the RNA polymerase δ subunit (Nδ) from Bacillus subtilis solved at a resolution of 2.0Å is compared with the NMR structure determined previously. The molecule crystallizes in the space group C222(1) with a dimer in the asymmetric unit. Importantly, the X-ray structure exhibits significant differences from the lowest energy NMR structure. In addition to the overall structure differences, structurally important β sheets found in the NMR structure are not present in the crystal structure. We systematically investigated the cause of the discrepancies between the NMR and X-ray structures of Nδ, addressing the pH dependence, presence of metal ions, and crystal packing forces. We convincingly showed that the crystal packing forces, together with the presence of Ni(2+) ions, are the main reason for such a difference. In summary, the study illustrates that the two structural approaches may give unequal results, which need to be interpreted with care to obtain reliable structural information in terms of biological relevance.

摘要

将枯草芽孢杆菌RNA聚合酶δ亚基(Nδ)N端结构域以2.0Å分辨率解析得到的晶体结构与之前测定的NMR结构进行了比较。该分子在空间群C222(1)中结晶,不对称单元中有一个二聚体。重要的是,X射线结构与能量最低的NMR结构存在显著差异。除了整体结构差异外,NMR结构中发现的具有结构重要性的β折叠在晶体结构中不存在。我们系统地研究了Nδ的NMR结构与X射线结构之间差异的原因,探讨了pH依赖性、金属离子的存在以及晶体堆积力。我们有说服力地表明,晶体堆积力以及Ni(2+)离子的存在是造成这种差异的主要原因。总之,该研究表明这两种结构方法可能会给出不同的结果,为了从生物学相关性方面获得可靠的结构信息,需要谨慎解释这些结果。

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