Song Xiang-jin, Simplaceanu Virgil, Ho Nancy T, Ho Chien
Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.
Biochemistry. 2008 Apr 29;47(17):4907-15. doi: 10.1021/bi7023699. Epub 2008 Apr 1.
The present study reports distinct dynamic consequences for the T- and R-states of human normal adult hemoglobin (Hb A) due to the binding of a heterotropic allosteric effector, inositol hexaphosphate (IHP). A nuclear magnetic resonance (NMR) technique based on modified transverse relaxation optimized spectroscopy (TROSY) has been used to investigate the effect of conformational exchange of Hb A in both deoxy and CO forms, in the absence and presence of IHP, at 14.1 and 21.1 T, and at 37 degrees C. Our results show that the majority of the polypeptide backbone amino acid residues of deoxy- and carbonmonoxy-forms of Hb A in the absence of IHP is not mobile on the micros-ms time scale, with the exception of several amino acid residues, that is, beta109Val and beta132Lys in deoxy-Hb A, and alpha40Lys in HbCO A. The mobility of alpha40Lys in HbCO A can be explained by the crystallographic data showing that the H-bond between alpha40Lys and beta146His in deoxy-Hb A is absent in HbCO A. However, the conformational exchange of beta109Val, which is located in the intradimer (alpha 1beta 1 or alpha 2beta 2) interface, is not consistent with the crystallographic observations that show rigid packing at this site. IHP binding appears to rigidify alpha40Lys in HbCO A, but does not significantly affect the flexibility of beta109Val in deoxy-Hb A. In the presence of IHP, several amino acid residues, especially those at the interdimer (alpha 1beta 2 or alpha 2beta 1) interface of HbCO A, exhibit significant conformational exchange. The affected residues include the proximal beta92His in the beta-heme pocket, as well as some other residues located in the flexible joint (betaC helix-alphaFG corner) and switch (alphaC helix-betaFG corner) regions that play an important role in the dimer-dimer rotation of Hb during the oxygenation process. These findings suggest that, upon IHP binding, HbCO A undergoes a conformational fluctuation near the R-state but biased toward the T-state, apparently along the trajectory of its allosteric transition, accompanied by structural fluctuations in the heme pocket of the beta-chain. In contrast, no significant perturbation of the dynamic features on the ms-micros time scale has been observed upon IHP binding to deoxy-Hb A. We propose that the allosteric effector-induced quaternary structural fluctuation may contribute to the reduced ligand affinity of ligated hemoglobin. Conformational exchange mapping of the beta-chain of HbCO A observed at 21.1 T shows significantly increased scatter in the chemical exchange contribution to the transverse relaxation rate ( R ex) values, relative to those at lower fields, due to the enhanced effect of the local chemical shift anisotropy (CSA) fluctuation. A spring-on-scissors model is proposed to interpret the dynamic phenomena induced by the heterotropic effector, IHP.
本研究报告了由于异源别构效应物肌醇六磷酸(IHP)的结合,人类正常成人血红蛋白(Hb A)的T态和R态会产生不同的动态结果。基于改进的横向弛豫优化光谱(TROSY)的核磁共振(NMR)技术已被用于研究在14.1 T和21.1 T以及37℃下,在不存在和存在IHP的情况下,脱氧和CO形式的Hb A的构象交换效应。我们的结果表明,在不存在IHP时,Hb A的脱氧形式和碳氧形式的大多数多肽主链氨基酸残基在微秒至毫秒时间尺度上是不移动的,但有几个氨基酸残基除外,即脱氧-Hb A中的β109Val和β132Lys,以及HbCO A中的α40Lys。HbCO A中α40Lys的移动性可以通过晶体学数据来解释,该数据表明脱氧-Hb A中α40Lys和β146His之间的氢键在HbCO A中不存在。然而,位于二聚体内(α1β1或α2β2)界面的β109Val的构象交换与晶体学观察结果不一致,晶体学观察结果显示该位点堆积紧密。IHP结合似乎使HbCO A中的α40Lys刚性化,但对脱氧-Hb A中β109Val的灵活性没有显著影响。在存在IHP的情况下,几个氨基酸残基,特别是HbCO A中二聚体间(α1β2或α2β1)界面处的那些残基表现出显著的构象交换。受影响的残基包括β-血红素口袋中的近端β92His,以及位于柔性接头(βC螺旋-αFG转角)和开关(αC螺旋-βFG转角)区域的一些其他残基,这些区域在Hb氧合过程中的二聚体-二聚体旋转中起重要作用。这些发现表明,在IHP结合后,HbCO A在R态附近经历构象波动,但偏向T态,显然是沿着其别构转变的轨迹,同时伴随着β链血红素口袋中的结构波动。相比之下,在IHP与脱氧-Hb A结合后,未观察到毫秒至微秒时间尺度上动态特征的显著扰动。我们提出,别构效应物诱导的四级结构波动可能导致结合配体的血红蛋白的配体亲和力降低。在21.1 T下观察到的HbCO A的β链的构象交换图谱显示,相对于较低场强下的值,由于局部化学位移各向异性(CSA)波动的增强效应,横向弛豫率(Rex)值的化学交换贡献中的散射显著增加。提出了一个弹簧剪刀模型来解释由异源效应物IHP诱导的动态现象。