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低温下 X 射线辐照诱导的人血红蛋白亚硝酰化的配体结合中间产物。

Ligand binding intermediates of nitrosylated human hemoglobin induced at low temperature by X-ray irradiation.

机构信息

Istituto di Biochimica e Biochimica Clinica, Università Cattolica del Sacro Cuore, Largo F. Vito 1,00168, Roma, Italy.

出版信息

Inorg Chem. 2011 Oct 3;50(19):9423-9. doi: 10.1021/ic201086u. Epub 2011 Aug 30.

Abstract

Under prolonged X-ray irradiation, the ferrous heme of nitrosylated human adult hemoglobin derivative (HbNO) undergoes a reversible transition generating a 5-coordinate species, due to release of the Fe-NO bond. The overall process can be investigated using X-ray absorption near edge structure (XANES) spectroscopy. In this work, Fe K-edge XANES spectra were measured at T < 15 K, pH 9.2, i.e., on a high-affinity state (R-HbNO) where all the hemes are 6-coordinate, and at pH 6.5 in the presence of inositol hexakis-phosphate (IHP), i.e., on a low-affinity ligated state (T-HbNO) where the iron-hemes of the α-chains are 5-coordinate due to breaking of the Fe-proximal histidine bond. Under X-ray irradiation, 5-coordinate Fe-hemes are populated in both R-HbNO and T-HbNO, the Fe-NO bond lysis induced in T-HbNO involving rebinding of the proximal histidine to the transiently populated 4-coordinate hemes of the α-chains. A detailed analysis of the spectra confirms that different intermediate states in the ligand binding cooperative process of hemoglobin can be populated by X-ray irradiation, and that the part of the energy associated to the R-T quaternary transition, that is transmitted to the heme site, can be monitored by XANES spectroscopy.

摘要

在长时间的 X 射线照射下,亚硝酰化人成人血红蛋白衍生物(HbNO)中的亚铁血红素会发生可逆转变,生成一个 5 配位物种,这是由于 Fe-NO 键的释放。整个过程可以使用 X 射线吸收近边结构(XANES)光谱法进行研究。在这项工作中,在 T < 15 K、pH 9.2 下(即处于高亲和力状态(R-HbNO),所有血红素均为 6 配位)和 pH 6.5 下测量了 Fe K 边 XANES 光谱,存在肌醇六磷酸(IHP)时,即处于低亲和力配位状态(T-HbNO),由于 Fe 近端组氨酸键的断裂,α 链的铁血红素变为 5 配位。在 X 射线照射下,R-HbNO 和 T-HbNO 中都出现了 5 配位的 Fe-血红素,在 T-HbNO 中诱导的 Fe-NO 键裂解涉及到近端组氨酸与 α 链瞬时 4 配位血红素的重新结合。对光谱的详细分析证实,X 射线照射可以使血红蛋白配体结合协同过程中的不同中间状态得以实现,并且与 R-T 四级转变相关联的部分能量可以传递到血红素位点,这可以通过 XANES 光谱法进行监测。

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