Yue Wyatt W, Grizot Sylvestre, Buchanan Susan K
National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
J Mol Biol. 2003 Sep 12;332(2):353-68. doi: 10.1016/s0022-2836(03)00855-6.
Escherichia coli possesses a TonB-dependent transport system, which exploits the iron-binding capacity of citrate and its natural abundance. Here, we describe three structures of the outer membrane ferric citrate transporter FecA: unliganded and complexed with iron-free or diferric dicitrate. We show the structural mechanism for discrimination between the iron-free and ferric siderophore: the binding of diferric dicitrate, but not iron-free dicitrate alone, causes major conformational rearrangements in the transporter. The structure of FecA bound with iron-free dicitrate represents the first structure of a TonB-dependent transporter bound with an iron-free siderophore. Binding of diferric dicitrate to FecA results in changes in the orientation of the two citrate ions relative to each other and in their interactions with FecA, compared to the binding of iron-free dicitrate. The changes in ligand binding are accompanied by conformational changes in three areas of FecA: two extracellular loops, one plug domain loop and the periplasmic TonB-box motif. The positional and conformational changes in the siderophore and transporter initiate two independent events: ferric citrate transport into the periplasm and transcription induction of the fecABCDE transport genes. From these data, we propose a two-step ligand recognition event: FecA binds iron-free dicitrate in the non-productive state or first step, followed by siderophore displacement to form the transport-competent, diferric dicitrate-bound state in the second step.
大肠杆菌拥有一种依赖TonB的转运系统,该系统利用了柠檬酸的铁结合能力及其天然丰度。在此,我们描述了外膜柠檬酸铁转运蛋白FecA的三种结构:未结合配体的结构以及与无铁或二价铁柠檬酸络合物结合的结构。我们展示了区分无铁和铁载体的结构机制:二价铁柠檬酸的结合,而不是单独的无铁柠檬酸的结合,会导致转运蛋白发生重大构象重排。与无铁柠檬酸结合的FecA结构代表了依赖TonB的转运蛋白与无铁铁载体结合的首个结构。与无铁柠檬酸的结合相比,二价铁柠檬酸与FecA的结合导致两个柠檬酸离子相对于彼此的取向发生变化,以及它们与FecA的相互作用发生变化。配体结合的变化伴随着FecA三个区域的构象变化:两个细胞外环、一个塞子结构域环和周质TonB盒基序。铁载体和转运蛋白的位置和构象变化引发了两个独立的事件:柠檬酸铁转运到周质中以及fecABCDE转运基因的转录诱导。基于这些数据,我们提出了一个两步配体识别事件:FecA在非生产状态或第一步中结合无铁柠檬酸,随后在第二步中发生铁载体置换,形成具有转运能力的、与二价铁柠檬酸结合的状态。