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α1β1接触位点处β116组氨酸(G18)对血红蛋白αβ组装和自氧化的意义。

Significance of beta116 His (G18) at alpha1beta1 contact sites for alphabeta assembly and autoxidation of hemoglobin.

作者信息

Adachi Kazuhiko, Yang Yi, Lakka Vinaysagar, Wehrli Suzanne, Reddy Konda S, Surrey Saul

机构信息

The Children's Hospital of Philadelphia, Division of Hematology and NMR Core Facility, Philadelphia, Pennsylvania 19104, USA.

出版信息

Biochemistry. 2003 Sep 2;42(34):10252-9. doi: 10.1021/bi030095s.

Abstract

The role of heterotetramer interaction sites in assembly and autoxidation of hemoglobin is not clear. The importance of beta(116His) (G-18) and gamma(116Ile) at one of the alpha1beta1 or alpha1gamma1 interaction sites for homo-dimer formation and assembly in vitro of beta and gamma chains, respectively, with alpha chains to form human Hb A and Hb F was assessed using recombinant beta(116His)(-->)(Asp), beta(116His)(-->)(Ile), and beta(112Cys)(-->)(Thr,116His)(-->)(Ile) chains. Even though beta chains (e.g., 116 His) are in monomer/tetramer equilibrium, beta(116Asp) chains showed only monomer formation. In contrast, beta(116Ile) and beta(112Thr,116Ile) chains showed homodimer and homotetramer formation like gamma-globin chains which contain 116 Ile. Assembly rates in vitro of beta(116Ile) or beta(112Thr,116Ile) chains with alpha chains were 340-fold slower, while beta(116Asp) chains promoted assembly compared to normal beta-globin chains. These results indicate that amino acid hydrophobicity at the G-18 position in non-alpha chains plays a key role in homotetramer, dimer, and monomer formation, which in turn plays a critical role in assembly with alpha chains to form Hb A and Hb F. These results also suggest that stable dimer formation of gamma-globin chains must not occur in vivo, since this would inhibit association with alpha chains to form Hb F. The role of beta(116His) (G-18) in heterotetramer-induced stabilization of the bond with oxygen in hemoglobin was also assessed by evaluating autoxidation rates using recombinant Hb tetramers containing these variant globin chains. Autoxidation rates of alpha(2)beta(2)(116Asp) and alpha(2)beta(2)(116Ile) tetramers showed biphasic kinetics with the faster rate due to alpha chain oxidation and the slower to the beta chain variants whose rates were 1.5-fold faster than that of normal beta-globin chains. In addition, NMR spectra of the heme area of these two hemoglobin variant tetramers showed similar resonance peaks, which are different from those of Hb A. Oxygen-binding properties of alpha(2)beta(2)(116His)(-->)(Asp) and alpha(2)beta(2)(116His)(-->)(Ile), however, showed slight alteration compared to Hb A. These results suggest that the beta116 amino acid (G18) plays a critical role in not only stabilizing alpha1beta1 interactions but also in inhibiting hemoglobin oxidation. However, stabilization of the bonds between oxygen and heme may not be dependent on stabilization of alpha1beta1 interactions. Tertiary structural changes may lead to changes in the heme region in beta chains after assembly with alpha chains, which could influence stability of dioxygen binding of beta chains.

摘要

异源四聚体相互作用位点在血红蛋白组装和自氧化过程中的作用尚不清楚。利用重组的β(116His)(→)(Asp)、β(116His)(→)(Ile)和β(112Cys)(→)(Thr,116His)(→)(Ile)链,评估了α1β1或α1γ1相互作用位点之一处的β(116His)(G-18)和γ(116Ile)对于同二聚体形成以及β链和γ链分别与α链在体外组装形成人血红蛋白A(Hb A)和血红蛋白F(Hb F)的重要性。尽管β链(如116 His)处于单体/四聚体平衡状态,但β(116Asp)链仅形成单体。相比之下,β(116Ile)链和β(112Thr,116Ile)链表现出同二聚体和同四聚体的形成,类似于含有116 Ile的γ-珠蛋白链。β(116Ile)链或β(112Thr,116Ile)链与α链在体外的组装速率慢340倍,而与正常β-珠蛋白链相比,β(116Asp)链促进了组装。这些结果表明,非α链中G-18位置的氨基酸疏水性在同四聚体、二聚体和单体形成中起关键作用,进而在与α链组装形成Hb A和Hb F的过程中起关键作用。这些结果还表明,γ-珠蛋白链在体内必定不会形成稳定的二聚体,因为这会抑制与α链结合形成Hb F。通过使用含有这些变异珠蛋白链的重组血红蛋白四聚体评估自氧化速率,还评估了β(116His)(G-18)在异源四聚体诱导的血红蛋白中氧结合稳定性方面的作用。α(2)β(2)(116Asp)和α(2)β(2)(116Ile)四聚体的自氧化速率呈现双相动力学,较快的速率归因于α链氧化,较慢的速率归因于β链变异体,其速率比正常β-珠蛋白链快1.5倍。此外,这两种血红蛋白变异体四聚体血红素区域的核磁共振光谱显示出相似的共振峰,这与Hb A的共振峰不同。然而,α(2)β(2)(116His)(→)(Asp)和α(2)β(2)(116His)(→)(Ile)的氧结合特性与Hb A相比略有改变。这些结果表明,β116氨基酸(G18)不仅在稳定α1β1相互作用方面起关键作用,而且在抑制血红蛋白氧化方面也起关键作用。然而,氧与血红素之间键的稳定可能不依赖于α1β1相互作用的稳定。三级结构变化可能导致β链与α链组装后血红素区域发生变化,这可能会影响β链双氧结合的稳定性。

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