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周质铁离子结合蛋白的金属依赖性构象异构体。

Metal-dependent conformers of the periplasmic ferric ion binding protein.

作者信息

Nowalk A J, Vaughan K G, Day B W, Tencza S B, Mietzner T A

机构信息

Department of Molecular Genetics and Biochemistry, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.

出版信息

Biochemistry. 1997 Oct 21;36(42):13054-9. doi: 10.1021/bi971413o.

Abstract

One of the better understood structural correlates of Fe3+ binding by the transferrins is the conformational shift demonstrated by both lobes. FbpA, a prokaryotic protein involved in periplasmic iron transport, has previously been shown to be structurally and functionally homologous to the transferrins. Similar to each individual lobe of the transferrins, it is hypothesized that FbpA exists in two distinct conformations depending on whether metal is bound. Evidence for these changes is provided by the differential susceptibility of FbpA to trypsin digestion. Binding of Fe3+ by FbpA significantly decreases the ability of trypsin to digest wild-type protein. Construction of a null binding mutant, Tyr195Ile, confirms that protein "locked" in the apo-conformation is similarly susceptible to trypsin. This mutant also marks the initial characterization of an FbpA molecule unable to bind iron, suggesting that the Tyr195 residue is directly involved in iron binding. Other FbpA mutants which do bind iron show moderate resistance to digestion which suggests that they remain in the holo-protein conformation when binding Fe3+. The conformational states of FbpA may have important implications in protein-protein recognition during transport of Fe3+ between membranes, and may explain how these proteins function in the context of periplasm-to-cytosol Fe3+ transport.

摘要

转铁蛋白与Fe3+结合的结构关联中,人们较为了解的一点是两个叶结构域均出现的构象转变。FbpA是一种参与周质铁转运的原核蛋白,此前已证明其在结构和功能上与转铁蛋白同源。与转铁蛋白的每个叶结构域相似,据推测FbpA根据是否结合金属而以两种不同的构象存在。FbpA对胰蛋白酶消化的敏感性差异为这些变化提供了证据。FbpA与Fe3+的结合显著降低了胰蛋白酶消化野生型蛋白的能力。构建一个无结合能力的突变体Tyr195Ile,证实“锁定”在脱辅基构象的蛋白对胰蛋白酶同样敏感。该突变体也标志着首个无法结合铁的FbpA分子的初步表征,表明Tyr195残基直接参与铁结合。其他能结合铁的FbpA突变体对消化表现出中等抗性,这表明它们在结合Fe3+时保持全蛋白构象。FbpA的构象状态可能在膜间Fe3+转运过程中的蛋白质-蛋白质识别中具有重要意义,并且可以解释这些蛋白在周质到胞质的Fe3+转运过程中的功能。

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