Wang J, Larsen R W, Moench S J, Satterlee J D, Rousseau D L, Ondrias M R
Department of Chemistry, University of New Mexico, Albuquerque 87131, USA.
Biochemistry. 1996 Jan 16;35(2):453-63. doi: 10.1021/bi9518499.
Transient resonance Raman, Raman difference, circular dichroism (CD), and optical absorption studies have been carried out on the electrostatic complexes formed by yeast cytochrome c peroxidase (CCP) with horse cytochrome c (Cytc) in low ionic strength solutions. In all the complexes examined [e.g., CCP(II)/Cytc(II), CCP(III)/Cytc(II), CCP(III)/Cytc(III)], the local heme environments of both proteins are largely unperturbed upon complexation. Specifically, CCP preserves a completely pentacoordinate high-spin heme in both its ferric and ferrous forms in CCP/Cytc complexes and uncomplexed mixtures. We found no evidence corroborating the previously reported increase in the low-spin fraction of CCP heme upon complexation with Cytc [Hildebrandt et al. (1992) Biochemistry 31, 2384-2392]. Instead, our Raman data strongly suggest that the H-bonding networks in the distal and proximal pockets of CCP are well maintained in the complexes. On the other hand, CD spectra of CCP(III)/Cytc(III) complexes showed substantial variations (relative to the uncomplexed mixtures) in the far-UV region, reflecting some protein conformational rearrangements. In addition, the spectral data suggest that complexation with Cytc affects the previously observed pH-dependent flexibility of the heme structure of CCP and thus influences the photodynamics of the CCP active site.
已对酵母细胞色素c过氧化物酶(CCP)与马细胞色素c(Cytc)在低离子强度溶液中形成的静电复合物进行了瞬态共振拉曼、拉曼差、圆二色性(CD)和光吸收研究。在所研究的所有复合物中[例如,CCP(II)/Cytc(II)、CCP(III)/Cytc(II)、CCP(III)/Cytc(III)],两种蛋白质的局部血红素环境在形成复合物后基本未受干扰。具体而言,在CCP/Cytc复合物和未复合的混合物中,CCP的三价铁和二价铁形式均保留了完全五配位的高自旋血红素。我们没有发现证据证实先前报道的与Cytc复合后CCP血红素低自旋部分增加的情况[希尔德布兰特等人(1992年),《生物化学》31卷,2384 - 2392页]。相反,我们的拉曼数据强烈表明,CCP远端和近端口袋中的氢键网络在复合物中得到了很好的维持。另一方面,CCP(III)/Cytc(III)复合物的CD光谱在远紫外区域显示出显著变化(相对于未复合的混合物),反映了一些蛋白质构象重排。此外,光谱数据表明与Cytc复合会影响先前观察到的CCP血红素结构的pH依赖性灵活性,从而影响CCP活性位点的光动力学。