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The role of the synergistic phosphate anion in iron transport by the periplasmic iron-binding protein from Haemophilus influenzae.协同磷酸阴离子在流感嗜血杆菌周质铁结合蛋白铁转运中的作用。
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2
Fasting serum sulfate levels before and after development of osteoarthritis in participants of the veterans administration normative aging longitudinal study do not differ from levels in participants in whom osteoarthritis did not develop.在退伍军人管理局规范老化纵向研究的参与者中,骨关节炎发生前后的空腹血清硫酸盐水平与未发生骨关节炎的参与者的水平没有差异。
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4
Phosphate ester hydrolysis is catalyzed by a bacterial transferrin: potential implications for in vivo iron transport mechanisms.磷酸酯水解由一种细菌转铁蛋白催化:对体内铁转运机制的潜在影响。
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8
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J Biol Inorg Chem. 2003 Nov;8(8):881-92. doi: 10.1007/s00775-003-0487-y. Epub 2003 Oct 9.
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The influence of the synergistic anion on iron chelation by ferric binding protein, a bacterial transferrin.协同阴离子对细菌转铁蛋白——铁结合蛋白螯合铁的影响。
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10
Structure validation by Calpha geometry: phi,psi and Cbeta deviation.通过Cα几何结构进行结构验证:φ、ψ和Cβ偏差。
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硫酸根作为一种协同阴离子促进细菌转铁蛋白FbpA与铁的结合:阴离子混杂性的起源及影响

Sulfate as a synergistic anion facilitating iron binding by the bacterial transferrin FbpA: the origins and effects of anion promiscuity.

作者信息

Heymann J J, Weaver K D, Mietzner T A, Crumbliss A L

机构信息

Department of Chemistry, Duke University, Durham, North Carolina 27708-0346, USA.

出版信息

J Am Chem Soc. 2007 Aug 8;129(31):9704-12. doi: 10.1021/ja0709268. Epub 2007 Jul 14.

DOI:10.1021/ja0709268
PMID:17630737
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3674819/
Abstract

The ferric binding protein, FbpA, has been demonstrated to facilitate the transport of naked Fe3+ across the periplasmic space of several Gram-negative bacteria. The sequestration of iron by FbpA is facilitated by the presence of a synergistic anion, such as phosphate or sulfate. Here we report the sequestration of Fe3+ by FbpA in the presence of sulfate, at an assumed periplasmic pH of 6.5 to form FeFbpA-SO4 with K'(eff) = 1.7 x 10(16) M(-1) (at 20 degrees C, 50 mM MES, 200 mM KCl). The iron affinity of the FeFbpA-SO4 protein assembly is 2 orders of magnitude lower than when bound with phosphate and is the lowest of any of the FeFbpA-X assemblies yet reported. Iron reduction at the cytosolic membrane receptor may be an essential aspect of the periplasmic iron-transport process, and with an E(1/2) of -158 mV (NHE), FeFbpA-SO4 is the most easily reduced of all FeFbpA-X assemblies yet studied. The variation of FeFbpA-X assembly stability (K'(eff)) and ease of reduction (E(1/2)) with differing synergistic anions X(n-) are correlated over a range of 14 kJ, suggesting that the variations in redox potentials are due to stabilization of Fe3+ in FeFbpA-X by X(n-). Anion promiscuity of FbpA in the diverse composition of the periplasmic space is illustrated by the ex vivo exchange kinetics of FeFbpA-SO4 with phosphate and arsenate, where first-order kinetics with respect to FeFbpA-SO4 (k = 30 s(-1)) are observed at pH 6.5, independent of entering anion concentration and identity. Anion lability and influence on the iron affinity and reduction potential for FeFbpA-X support the hypothesis that synergistic anion exchange may be an important regulator in iron delivery to the cytosol. This structural and thermodynamic analysis of anion binding in FeFbpA-X provides additional insight into anion promiscuity and importance.

摘要

铁结合蛋白FbpA已被证明有助于裸铁离子(Fe3+)穿过几种革兰氏阴性菌的周质空间。FbpA对铁的螯合作用因协同阴离子(如磷酸根或硫酸根)的存在而得到促进。在此,我们报告了在硫酸根存在下,假定周质pH值为6.5时,FbpA对Fe3+的螯合作用,形成FeFbpA - SO4,其有效平衡常数K'(eff) = 1.7×10(16) M(-1)(20℃,50 mM MES,200 mM KCl)。FeFbpA - SO4蛋白组装体对铁的亲和力比与磷酸根结合时低2个数量级,是迄今报道的所有FeFbpA - X组装体中最低的。胞质膜受体处的铁还原可能是周质铁转运过程的一个重要方面,且FeFbpA - SO4的半波电位E(1/2)为 - 158 mV(NHE),是迄今研究的所有FeFbpA - X组装体中最易被还原的。不同协同阴离子X(n-)作用下,FeFbpA - X组装体稳定性(K'(eff))和还原难易程度(E(1/2))的变化在14 kJ范围内具有相关性,这表明氧化还原电位的变化是由于X(n-)对FeFbpA - X中Fe3+的稳定作用。FeFbpA - SO4与磷酸根和砷酸根的体外交换动力学说明了FbpA在周质空间不同组成中的阴离子混杂性,在pH 6.5时,观察到相对于FeFbpA - SO4的一级动力学(k = 30 s(-1)),且与进入的阴离子浓度和种类无关。阴离子的不稳定性以及对FeFbpA - X铁亲和力和还原电位的影响支持了协同阴离子交换可能是铁向胞质输送的重要调节因子这一假说。对FeFbpA - X中阴离子结合的这种结构和热力学分析为阴离子混杂性及其重要性提供了更多见解。