From the Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213.
From the Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213.
J Biol Chem. 2013 Aug 30;288(35):25512-25521. doi: 10.1074/jbc.M113.474841. Epub 2013 Jul 18.
The E11 valine in the distal heme pocket of either the α- or β-subunit of human adult hemoglobin (Hb A) was replaced by leucine, isoleucine, or phenylalanine. Recombinant proteins were expressed in Escherichia coli and purified for structural and functional studies. (1)H NMR spectra were obtained for the CO and deoxy forms of Hb A and the mutants. The mutations did not disturb the α1β2 interface in either form, whereas the H-bond between αHis-103 and βGln-131 in the α1β1 interfaces of the deoxy α-subunit mutants was weakened. Localized structural changes in the mutated heme pocket were detected for the CO form of recombinant Hb (rHb) (αV62F), rHb (βV67I), and rHb (βV67F) compared with Hb A. In the deoxy form the proximal histidyl residue in the β-subunit of rHb (βV67F) has been altered. Furthermore, the interactions between the porphyrin ring and heme pocket residues have been perturbed in rHb (αV62I), rHb (αV62F), and rHb (βV67F). Functionally, the oxygen binding affinity (P50), cooperativity (n50), and the alkaline Bohr Effect of the three α-subunit mutants and rHb (βV67L) are similar to those of Hb A. rHb (βV67I) and rHb (βV67F) exhibit low and high oxygen affinity, respectively. rHb (βV67F) has P50 values lower that those reported for rHb (αL29F), a B10 mutant studied previously in our laboratory (Wiltrout, M. E., Giovannelli, J. L., Simplaceanu, V., Lukin, J. A., Ho, N. T., and Ho, C. (2005) Biochemistry 44, 7207-7217). These E11 mutations do not slow down the autoxidation and azide-induced oxidation rates of the recombinant proteins. Results from this study provide new insights into the roles of E11 mutants in the structure-function relationship in hemoglobin.
E11 缬氨酸在人成人血红蛋白(HbA)的α-或β-亚基的远端血红素口袋中被亮氨酸、异亮氨酸或苯丙氨酸取代。重组蛋白在大肠杆菌中表达并进行纯化,用于结构和功能研究。获得了 CO 和脱氧形式的 HbA 和突变体的(1)H NMR 谱。这些突变没有扰乱任何一种形式的α1β2 界面,而脱氧α-亚基突变体的α1β1 界面中αHis-103 和βGln-131 之间的氢键被削弱。与 HbA 相比,在重组血红蛋白(rHb)(αV62F)、rHb(βV67I)和 rHb(βV67F)的 CO 形式中检测到突变血红素口袋的局部结构变化。在脱氧形式下,β-亚基中 rHb(βV67F)的近端组氨酸残基已发生改变。此外,在 rHb(αV62I)、rHb(αV62F)和 rHb(βV67F)中,卟啉环与血红素口袋残基之间的相互作用受到干扰。功能上,三个α-亚基突变体和 rHb(βV67L)的氧结合亲和力(P50)、协同性(n50)和碱性 Bohr 效应与 HbA 相似。rHb(βV67I)和 rHb(βV67F)分别表现出低氧亲和力和高氧亲和力。rHb(βV67F)的 P50 值低于我们实验室之前研究的 B10 突变体 rHb(αL29F)的报告值(Wiltrout,M.E.,Giovannelli,J.L.,Simplaceanu,V.,Lukin,J.A.,Ho,N.T.,和 Ho,C.(2005)生物化学 44,7207-7217)。这些 E11 突变不会减慢重组蛋白的自动氧化和叠氮化钠诱导氧化速率。本研究结果为 E11 突变体在血红蛋白结构-功能关系中的作用提供了新的见解。