Garau Gianpiero, Lemaire David, Vernet Thierry, Dideberg Otto, Di Guilmi Anne Marie
Laboratoire de Cristallographie Macromoléculaire, Institut de Biologie Structurale Jean-Pierre Ebel (CEA-CNRS UMR 5075-UJF), 41 Rue Jules Horowitz 38027, Grenoble Cedex 1, France.
J Biol Chem. 2005 Aug 5;280(31):28591-600. doi: 10.1074/jbc.M502744200. Epub 2005 May 20.
Streptococcus pneumoniae is the worldwide leading cause of deaths from invasive infections such as pneumoniae, sepsis, and meningitidis in children and the elderly. Nasopharyngeal colonization, which plays a key role in the development of pneumococcal disease, is highly dependent on a family of surface-exposed proteins, the choline-binding proteins (CBPs). Here we report the crystal structure of phosphorylcholine esterase (Pce), the catalytic domain of choline-binding protein E (CBPE), which has been shown to be crucial for host/pathogen interaction processes. The unexpected features of the Pce active site reveal that this enzyme is unique among the large family of hydrolases harboring the metallo-beta-lactamase fold. The orientation and calcium stabilization features of an elongated loop, which lies on top of the active site, suggest that the cleft may be rearranged. Furthermore, the structure of Pce complexed with phosphorylcholine, together with the characterization of the enzymatic role played by two iron ions located in the active site allow us to propose a reaction mechanism reminiscent of that of purple acid phosphatase. This mechanism is supported by site-directed mutagenesis experiments. Finally, the interactions of the choline binding domain and the Pce region of CBPE with chains of teichoic acids have been modeled. The ensemble of our biochemical and structural results provide an initial understanding of the function of CBPE.
肺炎链球菌是全球范围内儿童和老年人因肺炎、败血症和脑膜炎等侵袭性感染导致死亡的主要原因。鼻咽部定植在肺炎球菌疾病的发展中起关键作用,高度依赖于一类表面暴露蛋白,即胆碱结合蛋白(CBPs)。在此,我们报道了磷酸胆碱酯酶(Pce)的晶体结构,它是胆碱结合蛋白E(CBPE)的催化结构域,已被证明在宿主/病原体相互作用过程中至关重要。Pce活性位点的意外特征表明,该酶在具有金属β-内酰胺酶折叠的水解酶大家族中是独特的。位于活性位点上方的一个细长环的取向和钙稳定特征表明,裂缝可能会重新排列。此外,与磷酸胆碱复合的Pce结构,以及活性位点中两个铁离子所起的酶促作用的表征,使我们能够提出一种让人联想到紫色酸性磷酸酶的反应机制。该机制得到了定点诱变实验的支持。最后,对CBPE的胆碱结合结构域和Pce区域与磷壁酸链的相互作用进行了建模。我们的生化和结构结果的整体情况为CBPE的功能提供了初步认识。