Retzer M D, Yu R h, Zhang Y, Gonzalez G C, Schryvers A B
Department of Microbiology and Infectious Diseases, University of Calgary, Calgary, Alberta, Canada.
Microb Pathog. 1998 Oct;25(4):175-80. doi: 10.1006/mpat.1998.0226.
Many pathogens of the Pasteurellaceae and Neisseriaceae possess a surface receptor that binds transferrin (Tf) as an initial step in an iron acquisition process. This receptor is comprised of two proteins, transferrin binding protein A (TbpA) and transferrin binding protein B (TbpB). Since the ability to recognize the iron-loaded form of Tf preferentially would be a useful attribute of these receptors, we examined this property in a number of bacterial species. In solid-phase binding assays with isolated membranes, only the receptor from Moraxella catarrhalis was capable of preferentially binding iron-loaded Tf. In a competitive affinity isolation assay which enabled us to resolve TbpA and TbpB, TbpA from all tested species was shown to bind both apo and iron-loaded Tf. Under these assay conditions TbpB from M. catarrhalis, Haemophilus somnus and Pasteurella haemolytica discriminated between apo and holo Tf, whereas TbpB from Neisseria meningitidis showed no discrimination. The ability of TbpB from N. meningitidis to bind iron-saturated hTf preferentially became evident in a TbpA- background or by using recombinant TbpB. In binding assays with recombinant fusion proteins, both intact TbpB and the N-terminal half of TbpB from all the tested species preferentially bound Fe-loaded Tf, indicating that this may be a conserved mechanism by which these organisms optimize their ability to acquire iron.
许多巴斯德氏菌科和奈瑟氏菌科的病原体都拥有一种表面受体,该受体结合转铁蛋白(Tf)作为铁获取过程的起始步骤。这种受体由两种蛋白质组成,即转铁蛋白结合蛋白A(TbpA)和转铁蛋白结合蛋白B(TbpB)。由于优先识别铁负载形式的Tf的能力对于这些受体来说是一个有用的特性,我们在许多细菌物种中研究了这一特性。在使用分离膜进行的固相结合试验中,只有卡他莫拉菌的受体能够优先结合铁负载的Tf。在一项能够区分TbpA和TbpB的竞争性亲和分离试验中,所有测试物种的TbpA都显示能结合脱铁和铁负载的Tf。在这些试验条件下,卡他莫拉菌、睡眠嗜血杆菌和溶血巴斯德氏菌的TbpB能够区分脱铁和全铁Tf,而脑膜炎奈瑟氏菌的TbpB则没有这种区分能力。脑膜炎奈瑟氏菌的TbpB优先结合铁饱和人Tf的能力在TbpA缺陷背景下或使用重组TbpB时变得明显。在使用重组融合蛋白的结合试验中,所有测试物种的完整TbpB和TbpB的N端一半都优先结合铁负载的Tf,这表明这可能是一种保守机制,通过该机制这些生物体优化它们获取铁的能力。