Shrestha Manisha, Xiao Yi, Robinson Howard, Schubot Florian D
Department of Biological Sciences, Virginia Polytechnic Institute & State University, Washington Street, Blacksburg, VA 24060, United States of America.
Biology Department, Brookhaven National Laboratory, Upton, NY 11973-5000, United States of America.
PLoS One. 2015 Aug 28;10(8):e0136533. doi: 10.1371/journal.pone.0136533. eCollection 2015.
Pseudomonas aeruginosa employs a type three secretion system to facilitate infections in mammalian hosts. The operons encoding genes of structural components of the secretion machinery and associated virulence factors are all under the control of the AraC-type transcriptional activator protein, ExsA. ExsA belongs to a unique subfamily of AraC-proteins that is regulated through protein-protein contacts rather than small molecule ligands. Prior to infection, ExsA is inhibited through a direct interaction with the anti-activator ExsD. To activate ExsA upon host cell contact this interaction is disrupted by the anti-antiactivator protein ExsC. Here we report the crystal structure of the regulatory domain of ExsA, which is known to mediate ExsA dimerization as well as ExsD binding. The crystal structure suggests two models for the ExsA dimer. Both models confirmed the previously shown involvement of helix α-3 in ExsA dimerization but one also suggest a role for helix α-2. These structural data are supported by the observation that a mutation in α-2 greatly diminished the ability of ExsA to activate transcription in vitro. Additional in vitro transcription studies revealed that a conserved pocket, used by AraC and the related ToxT protein for the binding of small molecule regulators, although present in ExsA is not involved in binding of ExsD.
铜绿假单胞菌利用三型分泌系统促进在哺乳动物宿主中的感染。编码分泌机制结构成分及相关毒力因子的操纵子均受AraC型转录激活蛋白ExsA的控制。ExsA属于AraC蛋白的一个独特亚家族,其通过蛋白质 - 蛋白质相互作用而非小分子配体进行调控。在感染前,ExsA通过与抗激活因子ExsD的直接相互作用而被抑制。为了在与宿主细胞接触时激活ExsA,这种相互作用会被抗抗激活蛋白ExsC破坏。在此我们报道了ExsA调控结构域的晶体结构,已知该结构域介导ExsA二聚化以及ExsD结合。晶体结构提出了ExsA二聚体的两种模型。两种模型均证实了先前显示的α - 3螺旋在ExsA二聚化中的作用,但其中一种模型还表明α - 2螺旋也发挥作用。这些结构数据得到了以下观察结果的支持:α - 2螺旋中的一个突变极大地降低了ExsA在体外激活转录的能力。额外的体外转录研究表明,AraC和相关的ToxT蛋白用于结合小分子调节因子的一个保守口袋,虽然存在于ExsA中,但不参与ExsD的结合。