Santiago André S, Santos Clelton A, Mendes Juliano S, Toledo Marcelo A S, Beloti Lilian L, Souza Alessandra A, Souza Anete P
Centro de Biologia Molecular e Engenharia Genética (CBMEG), Universidade Estadual de Campinas, Campinas, SP, Brazil.
Centro APTA Citros Sylvio Moreira/IAC, Rodovia Anhanguera Km 158, Cordeirópolis, SP, Brazil.
Protein Expr Purif. 2015 Sep;113:72-8. doi: 10.1016/j.pep.2015.05.003. Epub 2015 May 12.
The Xylella fastidiosa 9a5c strain is a xylem-limited phytopathogen that is the causal agent of citrus variegated chlorosis (CVC). This bacterium is able to form a biofilm and occlude the xylem vessels of susceptible plants, which leads to significant agricultural and economic losses. Biofilms are associated with bacterial pathogenicity because they are very resistant to antibiotics and other metal-based chemicals that are used in agriculture. The X. fastidiosa YcjZ-like (XfYcjZ-like) protein belongs to the LysR-type transcriptional regulator (LTTR) family and is involved in various cellular functions that range from quorum sensing to bacterial survival. In the present study, we report the cloning, expression and purification of XfYcjZ-like, which was overexpressed in Escherichia coli. The secondary folding of the recombinant and purified protein was assessed by circular dichroism, which revealed that XfYcjZ-like contains a typical α/β fold. An initial hydrodynamic characterization showed that XfYcjZ-like is a globular tetramer in solution. In addition, using a polyclonal antibody against XfYcjZ-like, we assessed the expression profile of this protein during the different developmental phases of X. fastidiosa in in vitro cultivated biofilm cells and demonstrated that XfYcjZ-like is upregulated in planktonic cells in response to a copper shock treatment. Finally, the ability of XfYcjZ-like to interact with its own predicted promoter was confirmed in vitro, which is a typical feature of LysR. Taken together, our findings indicated that the XfYcjZ-like protein is involved in both the organization of the architecture and the maturation of the bacterial biofilm and that it is responsive to oxidative stress.
桑氏木质部难养菌9a5c菌株是一种局限于木质部的植物病原体,是柑橘杂色黄化病(CVC)的致病因子。这种细菌能够形成生物膜并堵塞易感植物的木质部导管,从而导致重大的农业和经济损失。生物膜与细菌致病性相关,因为它们对农业中使用的抗生素和其他金属基化学品具有很强的抗性。桑氏木质部难养菌YcjZ样(XfYcjZ样)蛋白属于LysR型转录调节因子(LTTR)家族,参与从群体感应到细菌存活的各种细胞功能。在本研究中,我们报告了在大肠杆菌中过表达的XfYcjZ样蛋白的克隆、表达和纯化。通过圆二色性评估重组和纯化蛋白的二级折叠,结果表明XfYcjZ样蛋白含有典型的α/β折叠。初步的流体动力学表征表明,XfYcjZ样蛋白在溶液中是球状四聚体。此外,我们使用针对XfYcjZ样蛋白的多克隆抗体,评估了该蛋白在体外培养的生物膜细胞中桑氏木质部难养菌不同发育阶段的表达谱,并证明XfYcjZ样蛋白在浮游细胞中因铜冲击处理而上调。最后,在体外证实了XfYcjZ样蛋白与其自身预测启动子相互作用的能力,这是LysR的典型特征。综上所述,我们的研究结果表明,XfYcjZ样蛋白参与细菌生物膜的结构组织和成熟,并且对氧化应激有反应。