Roulhac Petra L, Weaver Katherine D, Adhikari Pratima, Anderson Damon S, DeArmond Patrick D, Mietzner Timothy A, Crumbliss Alvin L, Fitzgerald Michael C
Department of Chemistry, Duke University, Durham, North Carolina 27708, USA.
Biochemistry. 2008 Apr 8;47(14):4298-305. doi: 10.1021/bi701188x. Epub 2008 Mar 14.
Ferric binding protein, FbpA, is a member of the transferrin superfamily whose function is to move an essential nutrient, iron, across the periplasm and into the cytosol through formation of a ternary complex containing Fe (3+) and a synergistic anion, X. Here we utilize SUPREX ( stability of unpurified proteins from rates of H/D exchange) to determine the identification and distribution of the synergistic anion in FeFbpA-X species in periplasmic preparations from Gram-negative bacteria. SUPREX is a mass spectrometry-based technique uniquely suited for thermodynamic analyses of protein-ligand complexes in complex biological mixtures such as periplasmic preparations. Model binary mixtures of FeFbpA-Cit and FeFbpA-PO 4 were initially characterized by SUPREX due to the likely presence of citrate and phosphate ions in the periplasm. Ex vivo SUPREX analyses were performed on FeFbpA-X species overexpressed in an Escherichia coli cell line and on endogenous FeFbpA-X species in Neisseria gonorrheae. Detected in the E. coli periplasmic extract were two distinct populations of FbpA, including one in which the protein was unliganded (i.e., apoFbpA) and one in which the protein was bound to iron and the synergistic anion, phosphate (i.e., FeFbpA-PO 4). FeFbpA-PO 4 was the only population of FbpA molecules detected in the N. gonorrheae periplasmic extract. This work provides the first determination of the identity of the in vivo anion bound to FeFbpA-X in the periplasm and substantiates the hypothesis that the synergistic anion plays a structural and functional role in FbpA-mediated transport of iron across the periplasm and into the cytosol.
铁结合蛋白FbpA是转铁蛋白超家族的成员,其功能是通过形成包含Fe(3+)和协同阴离子X的三元复合物,将必需营养素铁转运穿过周质并进入细胞质。在这里,我们利用SUPREX(基于氢/氘交换速率的未纯化蛋白质稳定性)来确定革兰氏阴性菌周质制剂中FeFbpA-X物种中协同阴离子的身份和分布。SUPREX是一种基于质谱的技术,特别适用于对复杂生物混合物(如周质制剂)中的蛋白质-配体复合物进行热力学分析。由于周质中可能存在柠檬酸根离子和磷酸根离子,最初通过SUPREX对FeFbpA-Cit和FeFbpA-PO₄的模型二元混合物进行了表征。对在大肠杆菌细胞系中过表达的FeFbpA-X物种以及淋病奈瑟菌中的内源性FeFbpA-X物种进行了体外SUPREX分析。在大肠杆菌周质提取物中检测到两种不同的FbpA群体,一种是蛋白质未结合配体的群体(即脱辅基FbpA),另一种是蛋白质与铁和协同阴离子磷酸根结合的群体(即FeFbpA-PO₄)。在淋病奈瑟菌周质提取物中检测到的FbpA分子群体只有FeFbpA-PO₄。这项工作首次确定了周质中与FeFbpA-X结合的体内阴离子的身份,并证实了协同阴离子在FbpA介导的铁穿过周质并进入细胞质的运输中起结构和功能作用的假设。