Schalk Isabelle J, Lamont Iain L, Cobessi David
Département Récepteurs et Protéines Membranaires, Ecole Supérieure de Biotechnologie de Strasbourg, Institut Gilbert-Laustriat UMR CNRS/Université-Strasbourg I, Illkirch, France.
Biometals. 2009 Aug;22(4):671-8. doi: 10.1007/s10534-008-9203-2. Epub 2009 Jan 20.
FpvA is the primary outer membrane transporter required for iron acquisition via the siderophore pyoverdine (Pvd) in Pseudomonas aeruginosa. FpvA, like other ferrisiderophore transporters, consists of a membrane-spanning beta-barrel occluded by a plug domain. The beta-strands of the barrel are connected by large extracellular loops and periplasmic turns. Like some other TonB-dependent transporters, FpvA has a periplasmic domain involved in a signalling cascade that regulates expression of genes required for ferrisiderophore transport. Here, the structures of FpvA in different loading states are analysed in light of mutagenesis data. This analysis highlights the roles of different protein domains in Pvd-Fe uptake and the signalling cascade and reveals a strong correlation between Pvd-Fe transport and activation of the signalling cascade. It is likely that conclusions drawn for FpvA will be relevant to other TonB-dependent ferrisiderophore transport and signalling proteins.
FpvA是铜绿假单胞菌中通过铁载体绿脓菌素(Pvd)获取铁所需的主要外膜转运蛋白。FpvA与其他铁载体转运蛋白一样,由一个被塞子结构域封闭的跨膜β桶组成。β桶的β链通过大的细胞外环和周质转角相连。与其他一些依赖TonB的转运蛋白一样,FpvA有一个周质结构域参与调节铁载体转运所需基因表达的信号级联反应。在此,根据诱变数据对不同负载状态下的FpvA结构进行了分析。该分析突出了不同蛋白质结构域在Pvd-Fe摄取和信号级联反应中的作用,并揭示了Pvd-Fe转运与信号级联反应激活之间的强相关性。从FpvA得出的结论可能与其他依赖TonB的铁载体转运和信号蛋白相关。