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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >The dynamics of the non-heme iron in bacterial reaction centers from Rhodobacter sphaeroides
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The dynamics of the non-heme iron in bacterial reaction centers from Rhodobacter sphaeroides

机译:球形红细菌细菌反应中心中非血红素铁的动力学

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摘要

We investigate the dynamical properties of the non-heme iron (NHFe) in His-tagged photosynthetic bacterial reaction centers (RCs) isolated from Rhodobacter (Rb.) sphaeroides. M?ssbauer spectroscopy and nuclear inelastic scattering of synchrotron radiation (NIS) were applied to monitor the arrangement and flexibility of the NHFe binding site. In His-tagged RCs, NHFe was stabilized only in a high spin ferrous state. Its hyperfine parameters (IS = 1.06 ± 0.01 mm/s and QS = 2.12 ± 0.01 mm/s), and Debye temperature (θ D0 ~ 167 K) are comparable to those detected for the high spin state of NHFe in non-His-tagged RCs. For the first time, pure vibrational modes characteristic of NHFe in a high spin ferrous state are revealed. The vibrational density of states (DOS) shows some maxima between 22 and 33 meV, 33 and 42 meV, and 53 and 60 meV and a very sharp one at 44.5 meV. In addition, we observe a large contribution of vibrational modes at low energies. This iron atom is directly connected to the protein matrix via all its ligands, and it is therefore extremely sensitive to the collective motions of the RC protein core. A comparison of the DOS spectra of His-tagged and non-His-tagged RCs from Rb. sphaeroides shows that in the latter case the spectrum was overlapped by the vibrations of the heme iron of residual cytochrome c 2, and a low spin state of NHFe in addition to its high spin one. This enabled us to pin-point vibrations characteristic for the low spin state of NHFe.
机译:我们调查从血球红球菌分离的His标记的光合细菌反应中心(RCs)中的非血红素铁(NHFe)的动力学性质。应用Msssbauer光谱和同步加速器辐射(NIS)的核非弹性散射来监测NHFe结合位点的排列和柔性。在带有His标签的RC中,NHFe仅在高自旋亚铁状态下稳定。其超精细参数(IS = 1.06±0.01 mm / s和QS = 2.12±0.01 mm / s)和德拜温度(θD0〜167 K)与在非His-标记的RC。首次揭示了高自旋亚铁态下NHFe的纯振动模式。状态的振动密度(DOS)在22和33 meV之间,在33和42 meV之间以及在53和60 meV之间显示出一些最大值,而在44.5 meV处显示出一个非常陡峭的最大值。此外,我们观察到低能量振动模式的巨大贡献。该铁原子通过其所有配体直接连接到蛋白质基质,因此对RC蛋白质核心的集体运动极为敏感。来自Rb的His标记和非His标记的RC的DOS光谱比较。 sphaeroides表明,在后一种情况下,光谱被残留的细胞色素c 2的血红素铁的振动和NHFe的低自旋态(高自旋态)重叠。这使我们能够查明NHFe低自旋态的振动特性。

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