Othman S, Le Lirzin A, Desbois A
Département de Biologie Cellulaire et Moleculaire, CEA, Gif-sur-Yvette, France.
Biochemistry. 1994 Dec 27;33(51):15437-48. doi: 10.1021/bi00255a026.
In order to evaluate the steric and electronic influences of the heme axial ligands on the vibrational modes of heme c, various ferric and ferrous six-coordinate heme c compounds have been prepared from microperoxidase-8 (MP8) and different extrinsic ligands. In this paper, the absorption and Soret-excited resonance Raman (RR) spectra of imidazole, imidazolate, 1-methylimidazole, and histidine complexes of MP8 are presented. The absorption characteristics of the unligated forms, either aggregated or monomeric, as well as of the ligated forms of MP8(III) and MP8(II) have been determined as a function of pH, the presence of a cationic detergent, and the ligand concentration. Spectrophotometric titrations have shown that MP8(III) and MP8(II) can bind one or two molecules of exogenous ligand, forming monoligated or bisligated complexes. The latter form, observed with large excesses of ligand, results from the displacement of the intrinsic proximal His of MP8 by an exogenous ligand. Several structural marker bands have been detected in the high- and low-frequency regions of RR spectra. The high-frequency RR spectra of the ImH compounds of MP8(III) exhibit a v10 mode sensitive to ligand deprotonation(s). Moreover, the replacement of His by an exogenous ImH in MP8(III) complexes induces the upshift of the v10 mode frequency (1637-1641 cm-1), indicating that the porphyrin skeleton is less distorted when the internal coordination of proximal His to heme is broken. A similar dependence of the out-of-plane porphyrin distortion is suggested for the low-frequency mode v8 (343-347 cm-1). As far as the ferrous compounds are concerned, the mode most sensitive to the ImH deprotonation is v11, which is downshifted from 1539 to 1527 cm-1. Comparisons of the low-frequency regions of the RR spectra of imidazole-type ligated MP8(III) and MP8(II) complexes, as well as observations based on isotopic substitutions of the corresponding 1-methylimidazole complexes (MeIm-->MeIm-d6), allow the assignment of two bands in the 184-197 and 400-409 cm-1 regions to modes involving the symmetric and asymmetric stretches of the axial ligands, respectively. Two other bands in the 343-347 and 359-362 cm-1 regions, sensitive to the mass and/or deprotonation states of the axial ligands, have been tentatively assigned to v(Fe-N(pyrrole)) modes coupled to either a deformation mode of axial bonds or an internal mode of the bound imidazole(s).(ABSTRACT TRUNCATED AT 400 WORDS)
为了评估血红素轴向配体对血红素c振动模式的空间和电子影响,已从微过氧化物酶-8(MP8)和不同的外在配体制备了各种三价铁和二价铁六配位血红素c化合物。本文展示了MP8的咪唑、咪唑盐、1-甲基咪唑和组氨酸配合物的吸收光谱和Soret激发共振拉曼(RR)光谱。已确定未配位形式(聚集态或单体态)以及MP8(III)和MP8(II)配位形式的吸收特性随pH值、阳离子去污剂的存在以及配体浓度的变化而变化。分光光度滴定表明,MP8(III)和MP8(II)可以结合一或两个外源配体分子,形成单配位或双配位配合物。后者在配体大量过量时观察到,是由于外源配体取代了MP8的内在近端组氨酸。在RR光谱的高频和低频区域检测到了几个结构标记带。MP8(III)的ImH化合物的高频RR光谱显示出对配体去质子化敏感的v10模式。此外,在MP8(III)配合物中用外源ImH取代组氨酸会导致v10模式频率升高(1637 - 1641 cm-1),这表明当近端组氨酸与血红素的内部配位被破坏时,卟啉骨架的扭曲程度较小。对于低频模式v8(343 - 347 cm-1),也表明了面外卟啉扭曲存在类似的依赖性。就二价铁化合物而言,对ImH去质子化最敏感的模式是v11,其从1539 cm-1下移至1527 cm-1。对咪唑型配位的MP8(III)和MP8(II)配合物的RR光谱低频区域进行比较,以及基于相应的1-甲基咪唑配合物(MeIm→MeIm-d6)的同位素取代的观察结果,使得可以将184 - 197和400 - 409 cm-1区域的两个带分别归属于涉及轴向配体对称和不对称拉伸的模式。在343 - 347和359 - 362 cm-1区域的另外两个带,对轴向配体的质量和/或去质子化状态敏感,已初步归属于与轴向键的变形模式或结合的咪唑的内部模式耦合的v(Fe-N(吡咯))模式。(摘要截断于400字)