首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >HEMOGLOBIN A: AN ELECTRON PARAMAGNETIC RESONANCE STUDY OF THE EFFECTS OF INTERCHAIN CONTACTS ON THE HEME SYMMETRY OF HIGH-SPIN AND LOW-SPIN DERIVATIVES OF FERRIC ALPHA CHAINS
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HEMOGLOBIN A: AN ELECTRON PARAMAGNETIC RESONANCE STUDY OF THE EFFECTS OF INTERCHAIN CONTACTS ON THE HEME SYMMETRY OF HIGH-SPIN AND LOW-SPIN DERIVATIVES OF FERRIC ALPHA CHAINS

机译:血红蛋白A:链间接触对铁α链的高旋转和低旋转导数的血红素对称性的影响的电子顺磁共振研究

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摘要

Hemoglobin, the oxygen-binding heme protein of blood is composed of four subunits of two types, alpha and beta. Although the protein when isolated is diamagnetic, by oxidation it can be converted to various paramagnetic ferric forms exhibiting specific electron paramagnetic resonance (EPR) spectra. Using electron paramagnetic resonance, we have shown that the symmetry of the heme of isolated ferric alpha chains is different from that of the heme of these same subunits when associated with ferric beta chains in the parent tetramer. The high-spin form of the isolated ferric alpha chains shows a clearly resolved departure from tetragonal symmetry in contrast to ferrihemoglobin A, where the environment of the iron of all four chains is nearly tetragonal. This difference in heme symmetry suggests that the maintenance of tetragonal symmetry in the hemoglobin tetramer must be brought about by the configuration the alpha chains assume due to their contact with the beta chains. When isolated from the tetramer, some parts of the alpha chain must undergo physical displacement from a configuration that had been stabilized by the beta chains.Although differences in symmetry between monomer and tetramer are seen with high-spin forms, no such difference exists with two low-spin ferric forms. Here the symmetries of iron are primarily governed by the immediate ligand environment of the iron and not by the state of association of the protein.
机译:血红蛋白是血液中与氧结合的血红素蛋白,由α和β两种类型的四个亚基组成。尽管分离后的蛋白质是抗磁性的,但通过氧化可以将其转化为各种顺磁性铁形式,表现出特定的电子顺磁共振(EPR)光谱。使用电子顺磁共振,我们已经显示,当与母体四聚体中的铁β链相关时,分离的铁α链的血红素的对称性不同于这些相同亚基的血红素的对称性。分离的三价铁链的高纺丝形式显示出明显的四方对称性偏离,而铁血红蛋白A则所有四条链的铁的环境几乎都是四方的。血红素对称性的这种差异表明血红蛋白四聚体中四边形对称性的维持必须通过α链由于与β链的接触而假定的构型来实现。当与四聚体分离时,α链的某些部分必须经过已经​​由β链稳定化的构型进行物理置换。尽管在高纺丝形式下可以看到单体和四聚体之间的对称性差异,但对于两个低旋铁形式。在此,铁的对称性主要由铁的直接配体环境决定,而不由蛋白质的缔合状态决定。

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