Cornelissen Cynthia Nau
Department of Microbiology and Immunology, Medical College of Virginia campus, Virginia Commonwealth University, Richmond, VA 23298-0678, USA.
Front Biosci. 2003 May 1;8:d836-47. doi: 10.2741/1076.
Members of the families Neisseriaceae, Pasteurellaceae and Moraxellaceae are capable of transferrin-iron acquisition in the absence of siderophore production. They do so via expression of a bi-partite receptor composed of two dissimilar proteins, TbpA and TbpB. Both proteins are surface exposed, iron-regulated and capable of binding transferrin. However, other physiochemical, antigenic, and immunogenic characteristics of the proteins are quite distinct. TbpB is a lipoprotein, which like the mammalian transferrin receptor is capable if discriminating between apo- and holo-transferrin. Expression of TbpB is not essential for transferrin-iron uptake, and in rare situations, the gene that encodes this protein is not linked to the gene encoding the second component. TbpA is a member of a family of TonB-dependent transporters, others of which accomplish ferric-siderophore and vitamin B12 uptake at the expense of a proton gradient across the cytoplasmic membrane. However, unlike the other TonB-dependent receptors where vitamins or ferric-siderophores are wholly internalized, the bacterial transferrin receptor must remove iron from transferrin at the cell surface. This review focuses on the structure-function relationships in the transferrin-binding proteins, their sequence and antigenic diversity, and the mechanisms by which they accomplish transferrin-iron uptake. The contribution of these proteins to pathogenesis and vaccine development based on TbpA and TbpB are also discussed.
奈瑟菌科、巴斯德菌科和莫拉菌科的成员能够在不产生铁载体的情况下获取转铁蛋白结合铁。它们通过表达由两种不同蛋白质TbpA和TbpB组成的双组分受体来实现这一点。这两种蛋白质都暴露于表面,受铁调节,并且能够结合转铁蛋白。然而,这两种蛋白质的其他物理化学、抗原和免疫原性特征却截然不同。TbpB是一种脂蛋白,与哺乳动物转铁蛋白受体一样,能够区分脱铁转铁蛋白和铁结合转铁蛋白。TbpB的表达对于转铁蛋白结合铁的摄取并非必需,在极少数情况下,编码该蛋白质的基因与编码第二种成分的基因不相连。TbpA是TonB依赖性转运蛋白家族的成员,该家族的其他成员通过消耗跨细胞质膜的质子梯度来完成铁载体铁和维生素B12的摄取。然而,与其他TonB依赖性受体不同,维生素或铁载体铁在其他TonB依赖性受体中会被完全内化,而细菌转铁蛋白受体必须在细胞表面从转铁蛋白中去除铁。本综述重点关注转铁蛋白结合蛋白的结构-功能关系、它们的序列和抗原多样性,以及它们完成转铁蛋白结合铁摄取的机制。还讨论了这些蛋白质对基于TbpA和TbpB的发病机制和疫苗开发的贡献。