Machado Agnes Thiane Pereira, Fonseca Emanuella Maria Barreto, Reis Marcelo Augusto Dos, Saraiva Antonio Marcos, Santos Clelton Aparecido Dos, de Toledo Marcelo Augusto Szymanski, Polikarpov Igor, de Souza Anete Pereira, Aparicio Ricardo, Iulek Jorge
Department of Chemistry, State University of Ponta Grossa, Brazil.
Institute of Chemistry, University of Campinas, São Paulo, Brazil.
Proteins. 2017 Oct;85(10):1931-1943. doi: 10.1002/prot.25347. Epub 2017 Jul 24.
Xylella fastidiosa is a xylem-limited bacterium that infects a wide variety of plants. Stationary phase survival protein E is classified as a nucleotidase, which is expressed when bacterial cells are in the stationary growth phase and subjected to environmental stresses. Here, we report four refined X-ray structures of this protein from X. fastidiosa in four different crystal forms in the presence and/or absence of the substrate 3'-AMP. In all chains, the conserved loop verified in family members assumes a closed conformation in either condition. Therefore, the enzymatic mechanism for the target protein might be different of its homologs. Two crystal forms exhibit two monomers whereas the other two show four monomers in the asymmetric unit. While the biological unit has been characterized as a tetramer, differences of their sizes and symmetry are remarkable. Four conformers identified by Small-Angle X-ray Scattering (SAXS) in a ligand-free solution are related to the low frequency normal modes of the crystallographic structures associated with rigid body-like protomer arrangements responsible for the longitudinal and symmetric adjustments between tetramers. When the substrate is present in solution, only two conformers are selected. The most prominent conformer for each case is associated to a normal mode able to elongate the protein by moving apart two dimers. To our knowledge, this work was the first investigation based on the normal modes that analyzed the quaternary structure variability for an enzyme of the SurE family followed by crystallography and SAXS validation. The combined results raise new directions to study allosteric features of XfSurE protein.
木质部难养菌是一种局限于木质部的细菌,可感染多种植物。静止期存活蛋白E被归类为核苷酸酶,当细菌细胞处于静止生长阶段并受到环境压力时会表达。在此,我们报告了来自木质部难养菌的该蛋白在四种不同晶体形式下,存在和/或不存在底物3'-AMP时的四个精细X射线结构。在所有链中,在家族成员中验证的保守环在任何一种情况下都呈封闭构象。因此,目标蛋白的酶促机制可能与其同源物不同。两种晶体形式显示两个单体,而另外两种在不对称单元中显示四个单体。虽然生物学单元已被表征为四聚体,但其大小和对称性差异显著。通过小角X射线散射(SAXS)在无配体溶液中鉴定出的四种构象异构体与晶体结构的低频正常模式相关,这些模式与负责四聚体之间纵向和对称调节的刚体样原体排列有关。当溶液中存在底物时,仅选择两种构象异构体。每种情况下最突出的构象异构体与一种能够通过分开两个二聚体来拉长蛋白质的正常模式相关。据我们所知,这项工作是首次基于正常模式进行的研究,该研究分析了SurE家族一种酶的四级结构变异性,随后进行了晶体学和SAXS验证。综合结果为研究XfSurE蛋白的变构特征提出了新的方向。