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镓离子(Ga³⁺)作为铁离子(Fe³⁺)转运机制的探针:镓离子与铁结合蛋白A(FbpA)相互作用的表征

Ga3+ as a mechanistic probe in Fe3+ transport: characterization of Ga3+ interaction with FbpA.

作者信息

Weaver Katherine D, Heymann Jared J, Mehta Arnav, Roulhac Petra L, Anderson Damon S, Nowalk Andrew J, Adhikari Pratima, Mietzner Timothy A, Fitzgerald Michael C, Crumbliss Alvin L

机构信息

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

出版信息

J Biol Inorg Chem. 2008 Aug;13(6):887-98. doi: 10.1007/s00775-008-0376-5. Epub 2008 May 7.

Abstract

The obligate human pathogens Haemophilus influenzae, Neisseria gonorrhoeae, and N. meningitidis utilize a highly conserved, three-protein ATP-binding cassette transporter (FbpABC) to shuttle free Fe(3+) from the periplasm and across the cytoplasmic membrane. The periplasmic binding protein, ferric binding protein (FbpA), is capable of transporting other trivalent cations, including Ga(3+), which, unlike Fe(3+), is not redox-active. Because of a similar size and charge as Fe(3+), Ga(3+) is widely used as a non-redox-active Fe(3+) substitute for studying metal complexation in proteins and bacterial populations. The investigations reported here elucidate the similarities and differences in FbpA sequestration of Ga(3+) and Fe(3+), focusing on metal selectivity and the resulting transport function. The thermodynamic binding constant for Ga(3+) complexed with FbpA at pH 6.5, in 50 mM 4-morpholineethanesulfonic acid, 200 mM KCl, 5 mM KH(2)PO(4) was determined by UV-difference spectroscopy as log K'eff=13.7+/-0.6. This represents a 10(5)-fold weaker binding relative to Fe(3+) at identical conditions. The unfolding/refolding behavior of Ga(3+) and Fe(3+) holo-FbpA were also studied using a matrix-assisted laser desorption/ionization time-of-flight mass spectroscopy technique, stability of unpurified proteins from rates of H/D exchange (SUPREX). This analysis indicates significant differences between Fe(3+) and Ga(3+) sequestration with regard to protein folding behavior. A series of kinetic experiments established the lability of the Ga(3+)FbpA-PO(4) assembly, and the similarities/differences of stepwise loading of Fe(3+) into apo- or Ga(3+)-loaded FbpA. These biophysical characterization data are used to interpret FbpA-mediated Ga(3+) transport and toxicity in cell culture studies.

摘要

专性人类病原体流感嗜血杆菌、淋病奈瑟菌和脑膜炎奈瑟菌利用一种高度保守的三蛋白ATP结合盒转运体(FbpABC),将周质中的游离Fe(3+)穿梭并转运穿过细胞质膜。周质结合蛋白,即铁结合蛋白(FbpA),能够转运其他三价阳离子,包括Ga(3+),而Ga(3+)与Fe(3+)不同,它没有氧化还原活性。由于Ga(3+)与Fe(3+)的大小和电荷相似,因此Ga(3+)被广泛用作非氧化还原活性的Fe(3+)替代物,用于研究蛋白质和细菌群体中的金属络合作用。本文报道的研究阐明了FbpA螯合Ga(3+)和Fe(3+)的异同,重点关注金属选择性及其产生的转运功能。通过紫外差光谱法测定了在pH 6.5、50 mM 4-吗啉乙磺酸、200 mM KCl、5 mM KH(2)PO(4)条件下,Ga(3+)与FbpA络合的热力学结合常数为log K'eff = 13.7 ± 0.6。这表明在相同条件下,相对于Fe(3+),其结合能力弱10(5)倍。还使用基质辅助激光解吸/电离飞行时间质谱技术、基于氢/氘交换速率的未纯化蛋白质稳定性分析(SUPREX)研究了Ga(3+)和Fe(3+)全FbpA的解折叠/重折叠行为。该分析表明,在蛋白质折叠行为方面,Fe(3+)和Ga(3+)螯合存在显著差异。一系列动力学实验确定了Ga(3+)FbpA-PO(4)组装体的不稳定性,以及Fe(3+)逐步加载到脱辅基或Ga(3+)加载的FbpA中的异同。这些生物物理表征数据用于解释细胞培养研究中FbpA介导的Ga(3+)转运和毒性。

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