首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Kinetics and mechanism of exogenous anion exchange in FeFbpA-NTA: significance of periplasmic anion lability and anion binding activity of ferric binding protein A
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Kinetics and mechanism of exogenous anion exchange in FeFbpA-NTA: significance of periplasmic anion lability and anion binding activity of ferric binding protein A

机译:FeFbpA-NTA中外源阴离子交换的动力学和机理:周质阴离子的稳定性和三价铁结合蛋白A的阴离子结合活性的意义

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The bacterial transferrin ferric binding protein A (FbpA) requires an exogenous anion to facilitate iron sequestration, and subsequently to shuttle the metal across the periplasm to the cytoplasmic membrane. In the diverse conditions of the periplasm, numerous anions are known to be present. Prior in vitro experiments have demonstrated the ability of multiple anions to fulfill the synergistic iron-binding requirement, and the identity of the bound anion has been shown to modulate important physicochemical properties of iron-bound FbpA (FeFbpA). Here we address the kinetics and mechanism of anion exchange for the FeFbpA-nitrilotriacetate (NTA) assembly with several biologically relevant anions (citrate, oxalate, phosphate, and pyrophosphate), with nonphysiologic NTA serving as a representative synergistic anion/chelator. The kinetic data are consistent with an anion-exchange process that occurs in multiple steps, dependent on the identity of both the entering anion and the leaving anion. The exchange mechanism may proceed either as a direct substitution or through an intermediate FeFbpA-X* assembly based on anion (X) identity. Our kinetic results further develop an understanding of exogenous anion lability in the periplasm, as well as address the final step of the iron-free FbpA (apo-FbpA)/Fe3+ sequestration mechanism. Our results highlight the kinetic significance of the FbpA anion binding site, demonstrating a correlation between apo-FbpA/anion affinity and the FeFbpA rate of anion exchange, further supporting the requirement of an exogenous anion to complete tight sequestration of iron by FbpA, and developing a mechanism for anion exchange within FeFbpA that is dependent on the identity of both the entering anion and the leaving anion.
机译:细菌转铁蛋白铁结合蛋白A(FbpA)需要外源性阴离子以促进铁螯合,然后将金属穿过周质穿梭至细胞质膜。在周质的不同条件下,已知存在许多阴离子。先前的体外实验已经证明了多种阴离子能够满足协同作用的铁结合需求,并且结合阴离子的身份已证明可调节铁结合FbpA(FeFbpA)的重要理化性质。在这里,我们讨论了FeFbpA-三乙酸三铁盐(NTA)组装物中与几种生物学相关的阴离子(柠檬酸根,草酸根,磷酸根和焦磷酸根)进行阴离子交换的动力学和机理,其中非生理性NTA作为代表性的协同阴离子/螯合剂。动力学数据与发生在多个步骤中的阴离子交换过程一致,该过程取决于进入阴离子和离开阴离子的身份。交换机制可以作为直接取代进行,也可以通过基于阴离子(X)同一性的中间FeFbpA-X *组件进行。我们的动力学结果进一步发展了对周质中外源阴离子不稳定性的理解,并解决了无铁FbpA(apo-FbpA)/ Fe3 +螯合机制的最后一步。我们的研究结果突出了FbpA阴离子结合位点的动力学意义,证明了载脂蛋白FbpA /阴离子亲和力与FeFbpA阴离子交换速率之间的相关性,进一步支持了外源性阴离子通过FbpA完成对铁的严格隔离的要求, FeFbpA中阴离子交换的机制,该机制取决于进入阴离子和离开阴离子的身份。

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