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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Heme symmetry, vibronic structure, and dynamics in heme proteins: Ferrous nicotinate horse myoglobin and soybean leghemoglobin
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Heme symmetry, vibronic structure, and dynamics in heme proteins: Ferrous nicotinate horse myoglobin and soybean leghemoglobin

机译:血红素对称性,纤维蛋白结构和血红素蛋白的动力学:烟酸亚铁马肌红蛋白和大豆豆血红蛋白

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摘要

We report the visible and Soret absorption bands, down to cryogenic temperatures, of the ferrous nicotinate adducts of native and deuteroheme reconstituted horse heart myoglobin in comparison with soybean leghemoglobin-a. The band profile in the visible region is analyzed in terms of vibronic coupling of the heme normal modes to the electronic transition in the framework of the Herzberg-Teller approximation. This theoretical approach makes use of the crude Born-Oppenheimer states and therefore neglects the mixing between electronic and vibrational coordinates; however, it takes into account the vibronic nature of the visible absorption bands and allows an estimate of the vibronic side bands for both Condon and non-Condon vibrational modes. In this framework, an x - y splitting of the Q transition for native and deuteroheme reconstituted horse myoglobin is clearly assessed and attributed to electronic perturbations that, in turn, are caused by a reduction of the typical D-4h symmetry of the system due to heme distortions of B-1g-type symmetry and/or to an x - y asymmetric position of the nicotinate ring; in deuteroheme reconstituted horse myoglobin the asymmetric heme peripheral substituents add to the above effect(s). On the contrary, in leghemoglobin-a no spectral splitting upon nicotinate binding is observed, pointing to a planar heme configuration in which only distortions of A(1g)-type symmetry are effective and to which the nicotinate ring is bound in an x - y symmetric position. The local dynamic properties of the heme pocket of the three proteins are investigated through the temperature dependence of spectral line broadening. Leghemoglobin-a behaves as a softer matrix with respect to horse myoglobin, thus validating the hypothesis of a looser heme pocket conformation in the former protein, which allows a nondistorted heme configuration and a symmetric binding of the bulky nicotinate ligand. (C) 2000 John Wiley & Sons, Inc. [References: 35]
机译:我们报道了天然和氘代血红素重构的马心脏肌红蛋白与大豆豆血红蛋白-a相比,在低温下可见光和Soret吸收带,直至低温。在Herzberg-Teller近似的框架内,根据血红素正常模式与电子跃迁的振动耦合分析了可见区域的能带分布。这种理论方法利用了原始的Born-Oppenheimer态,因此忽略了电子坐标和振动坐标之间的混合。但是,它考虑了可见吸收带的振动特性,并允许对Condon和非Condon振动模式的振动侧带进行估计。在此框架中,清楚地评估了天然和氘代血红素重构的马肌红蛋白的Q跃迁的x-y分裂,并将其归因于电子扰动,而电子扰动又是由于系统的典型D-4h对称性降低而引起的。 B-1g型对称的血红素变形和/或烟酸酯环的x-y不对称位置;在氘血红素重构的马肌红蛋白中,不对称的血红素外围取代基增加了上述作用。相反,在豆血红蛋白中,未观察到烟酸酯结合时发生光谱分裂,这指向平面血红素构型,其中仅A(1g)型对称性的扭曲有效,并且烟酸酯环以x-y结合。对称位置。通过光谱线展宽的温度依赖性研究了这三种蛋白质的血红素口袋的局部动力学特性。相对于马肌红蛋白,来血红蛋白-a表现为较软的基质,因此验证了前一种蛋白质中较宽松的血红素口袋构象的假说,该构型允许血红素配体的血红素构型不对称且对称结合。 (C)2000 John Wiley&Sons,Inc. [参考:35]

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