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首页> 外文期刊>European Biophysics Journal >Structure of the Fe-heme in the homodimeric hemoglobin from Scapharca inaequivalvis and in the T72I mutant: an X-ray absorption spectroscopic study at low temperature
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Structure of the Fe-heme in the homodimeric hemoglobin from Scapharca inaequivalvis and in the T72I mutant: an X-ray absorption spectroscopic study at low temperature

机译:Scapharca inaequivalvis和T72I突变体的同型二聚体血红蛋白中铁血红素的结构:低温下的X射线吸收光谱研究

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摘要

The Fe site structure in the recombinant wild-type and T72I mutant of the cooperative homodimeric hemoglobin (HbI) of the mollusc Scapharca inaequivalvis has been investigated by measuring the Fe K-edge X-ray absorption near edge structure (XANES) spectra of their oxy, deoxy and carbonmonoxy derivatives, and the cryogenic photoproducts of the carbonmonoxy derivatives at T=12 K. According to our results, the Fe site geometry in T72I HbI-CO is quite similar to that of human carbonmonoxy hemoglobin (HbA-CO), while in native HbI-CO it seems intermediate between that of HbA-CO and sperm whale MbCO. The XANES spectra of oxy and deoxy derivatives are similar to the homologous spectra of human HbA, except for T72I HbI, for which the absorption edge is blue-shifted (about +1 eV) towards the spectrum of the oxy form. XANES spectra of the cryogenic photoproducts of HbA-CO (HbA*), HbI-CO (HbI*) and mutant HbI-CO (T72I HbI*) were acquired under continuous illumination at 12 K. The Fe-heme structures of the three photoproducts are similar; however, while in the case of HbA* and HbI* the data indicate incomplete structural relaxation of the Fe-heme towards its deoxy-like (T) form, the relaxation in T72I HbI* is almost completely towards the proposed "high affinity" Fe-heme structure of T72I HbI. This evidence suggests that minor tertiary restraints affect the Fe-heme dynamics of T72I HbI, corresponding to a reduction of the energy necessary for the T→R structural transition, which can contribute to the observed dramatic enhancement in oxygen affinity of this hemoprotein, and the decreased cooperativity.
机译:软体动物Scapharca inaequivalvis的合作同二聚体血红蛋白(HbI)的重组野生型和T72I突变体中的Fe位点结构已通过测量其氧的K边缘X射线近边缘结构(XANES)光谱进行了研究,脱氧和一氧化碳衍生物,以及T = 12 K处的一氧化碳衍生物的低温光产物。根据我们的结果,T72I HbI-CO中的Fe位几何形状与人的一氧化碳血红蛋白(HbA-CO)非常相似,而在天然HbI-CO中,似乎介于HbA-CO和抹香鲸MbCO之间。氧和脱氧衍生物的XANES光谱与人类HbA的同源光谱相似,除了T72I HbI的吸收光谱沿吸氧形式的光谱蓝移(约+1 eV)。 HbA-CO(HbA *),HbI-CO(HbI *)和突变型HbI-CO(T72I HbI *)的低温光产品的XANES光谱在连续照明下于12 K下获得。这三种光产品的Fe-血红素结构相似然而,虽然在HbA *和HbI *的情况下,数据表明Fe-血红素向其脱氧样(T)形式的结构不完全弛豫,但在T72I HbI *中的弛豫几乎完全朝着提议的“高亲和力” Fe -T72I HbI的血红素结构。该证据表明,较小的第三级约束会影响T72I HbI的铁血红素动力学,这对应于T→R结构转变所需的能量减少,这可能有助于观察到的这种血红蛋白的氧亲和力显着增强,并且协作性下降。

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