首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >The quantum mechanically mixed-spin state in a non-symbiotic plant hemoglobin: the effect of distal mutation on AHb1 from Arabidopsis thaliana
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The quantum mechanically mixed-spin state in a non-symbiotic plant hemoglobin: the effect of distal mutation on AHb1 from Arabidopsis thaliana

机译:非共生植物血红蛋白中的量子机械混合自旋状态:远端突变对拟南芥AHb1的影响

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摘要

Non-symbiotic hemoglobins are hexacoordinated heme proteins found in all plants. To gain insight into the importance of the heme hexacoordination and the coordinated distal histidine in general for the possible physiological functions of these proteins, the distal His(E7) of Arabidopsis thaliana hemoglobin (AHb1) was substituted by a leucine residue. The heme properties of the wild-type and mutant proteins have been characterized by electronic absorption, resonance Raman and electron paramagnetic resonance spectroscopic studies at room and low temperatures. Significant differences between the wild-type and mutant proteins have been detected. The most striking is the formation of an uncommon quantum mechanically mixed-spin heme species in the mutant. This is the first observation of such a spin state in a plant hemoglobin. The proportion of this species, which at room temperature coexists with a minor pentacoordinated high-spin form, increases markedly at low temperature.
机译:非共生血红蛋白是在所有植物中发现的六配位血红蛋白。为了深入了解血红素六配位和协调的远端组氨酸对于这些蛋白质可能的生理功能的重要性,拟南芥血红蛋白(AHb1)的远端His(E7)被亮氨酸残基取代。野生型和突变型蛋白的血红素特性已通过室温和低温下的电子吸收,共振拉曼光谱和电子顺磁共振波谱研究进行了表征。已检测到野生型和突变蛋白之间的显着差异。最惊人的是突变体中罕见的量子机械混合自旋血红素物种的形成。这是植物血红蛋白中这种自旋状态的首次观察。在室温下,与次要的五配位高纺丝形式共存的该物种的比例在低温下显着增加。

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