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氟化物和叠氮化物与人血红蛋白:触珠蛋白复合物中的铁结合:突出了配体依赖性的α和β血红蛋白链的不等效性。

Fluoride and azide binding to ferric human hemoglobin:haptoglobin complexes highlights the ligand-dependent inequivalence of the α and β hemoglobin chains.

机构信息

Interdepartmental Laboratory for Electron Microscopy, Roma Tre University, Via della Vasca Navale 79, 00146, Roma, Italy.

Department of Sciences, Roma Tre University, Viale Marconi 446, 00146, Roma, Italy.

出版信息

J Biol Inorg Chem. 2019 Mar;24(2):247-255. doi: 10.1007/s00775-019-01642-9. Epub 2019 Jan 31.

Abstract

Haptoglobin (Hp) binds human hemoglobin (Hb), contributing to prevent extra-erythrocytic Hb-induced damage. Hp forms preferentially complexes with αβ dimers, displaying heme-based reactivity. Here, kinetics and thermodynamics of fluoride and azide binding to ferric human Hb (Hb(III)) complexed with the human Hp phenotypes 1-1 and 2-2 (Hp1-1:Hb(III) and Hp2-2:Hb(III), respectively) are reported (pH 7.0 and 20.0 °C). Fluoride binds to Hp1-1:Hb(III) and Hp2-2:Hb(III) with a one-step kinetic and equilibrium behavior. In contrast, kinetics of azide binding to and dissociation from Hp1-1:Hb(III)(-N) and Hp2-2:Hb(III)(-N) follow a two-step process. However, azide binding to Hp1-1:Hb(III) and Hp2-2:Hb(III) is characterized by a simple equilibrium, reflecting the compensation of kinetic parameters. The fast and the slow step of azide binding to Hp1-1:Hb(III) and Hp2-2:Hb(III) should reflect azide binding to the ferric β and α chains, respectively, as also proposed for the similar behavior observed in Hb(III). Present results highlight the ligand-dependent kinetic inequivalence of Hb subunits in the ferric form, reflecting structural differences between the two subunits in the interaction with some ferric ligands.

摘要

触珠蛋白(Hp)与人血红蛋白(Hb)结合,有助于防止细胞外 Hb 引起的损伤。Hp 优先与αβ二聚体形成复合物,显示基于血红素的反应性。本文报道了氟化物和叠氮化物与人 Hp 表型 1-1 和 2-2(Hp1-1:Hb(III)和 Hp2-2:Hb(III),分别)复合物结合的铁(III)人 Hb(Hb(III))的动力学和热力学(pH 7.0 和 20.0°C)。氟化物与人 Hp1-1:Hb(III)和 Hp2-2:Hb(III)以一步动力学和平衡行为结合。相比之下,叠氮化物与人 Hp1-1:Hb(III)(-N)和 Hp2-2:Hb(III)(-N)结合和解离的动力学遵循两步过程。然而,叠氮化物与人 Hp1-1:Hb(III)和 Hp2-2:Hb(III)的结合受简单平衡的控制,反映了动力学参数的补偿。叠氮化物与人 Hp1-1:Hb(III)和 Hp2-2:Hb(III)的快速和缓慢结合步骤应分别反映叠氮化物与人 Hp1-1:Hb(III)和 Hp2-2:Hb(III)的铁β和α链的结合,如在 Hb(III)中观察到的类似行为也提出了这一点。目前的结果强调了在铁形式下 Hb 亚基的配体依赖性动力学不等效性,反映了两个亚基在与一些铁配体相互作用时的结构差异。

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