【2h】

Effective intermediate-spin iron in O2-transporting heme proteins

机译:O2转运血红素蛋白中有效的中旋铁

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摘要

Proteins carrying an iron-porphyrin (heme) cofactor are essential for biological O2 management. The nature of Fe-O2 bonding in hemoproteins is debated for decades. We used energy-sampling and rapid-scan X-ray Kβ emission and K-edge absorption spectroscopy as well as quantum chemistry to determine molecular and electronic structures of unligated (deoxy), CO-inhibited (carboxy), and O2-bound (oxy) hemes in myoglobin (MB) and hemoglobin (HB) solutions and in porphyrin compounds at 20–260 K. Similar metrical and spectral features revealed analogous heme sites in MB and HB and the absence of low-spin (LS) to high-spin (HS) conversion. Amplitudes of Kβ main-line emission spectra were directly related to the formal unpaired Fe(d) spin count, indicating HS Fe(II) in deoxy and LS Fe(II) in carboxy. For oxy, two unpaired Fe(d) spins and, thus by definition, an intermediate-spin iron center, were revealed by our static and kinetic X-ray data, as supported by (time-dependent) density functional theory and complete-active-space self-consistent-field calculations. The emerging Fe-O2 bonding situation includes in essence a ferrous iron center, minor superoxide character of the noninnocent ligand, significant double-bond properties of the interaction, and three-center electron delocalization as in ozone. It resolves the apparently contradictory classical models of Pauling, Weiss, and McClure/Goddard into a unifying view of O2 bonding, tuned toward reversible oxygen transport.
机译:携带铁-卟啉(血红素)辅因子的蛋白质对于生物氧气的管理至关重要。血蛋白中Fe-O2结合的性质已有数十年的历史。我们使用了能量采样和快速扫描X射线Kβ发射和K边缘吸收光谱以及量子化学来确定未连接(脱氧),CO抑制(羧基)和O2结合(氧基)的分子和电子结构。 )在20–260 K的肌红蛋白(MB)和血红蛋白(HB)溶液和卟啉化合物中的血红素。相似的量度和光谱特征显示MB和HB中类似的血红素位点,并且没有低旋(LS)到高旋(HS)转换。 Kβ主线发射光谱的振幅与形式不成对的Fe(d)自旋计数直接相关,表明脱氧中的HS Fe(II)和羧基中的LS Fe(II)。对于氧,我们的静态和动态X射线数据揭示了两个不成对的Fe(d)自旋,因而定义为中间自旋铁中心,并得到(随时间变化)密度泛函理论和完全活性的支持空间自洽场计算。新兴的Fe-O2键合情况从本质上包括亚铁中心,非纯配体的次要过氧化物特征,相互作用的显着双键性质以及在臭氧中的三中心电子离域化。它将鲍林(Pau​​ling),魏斯(Weiss)和麦克卢尔(McClure)/哥达德(McClure / Goddard)的明显矛盾的经典模型解析为统一的O2键合视图,调整为可逆的氧气传输。

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