Vos M H, Borisov V B, Liebl U, Martin J L, Konstantinov A A
Institut National de la Santé et de la Recherche Médicale U451, Laboratoire d'Optique Appliquée, Ecole Polytechnique-Ecole Nationale Supérieure des Techniques Avancées, 91761 Palaiseau Cedex, France.
Proc Natl Acad Sci U S A. 2000 Feb 15;97(4):1554-9. doi: 10.1073/pnas.030528197.
Interaction of the two high-spin hemes in the oxygen reduction site of the bd-type quinol oxidase from Escherichia coli has been studied by femtosecond multicolor transient absorption spectroscopy. The previously unidentified Soret band of ferrous heme b(595) was determined to be centered around 440 nm by selective excitation of the fully reduced unliganded or CO-bound cytochrome bd in the alpha-band of heme b(595). The redox state of the b-type hemes strongly affects both the line shape and the kinetics of the absorption changes induced by photodissociation of CO from heme d. In the reduced enzyme, CO photodissociation from heme d perturbs the spectrum of ferrous cytochrome b(595) within a few ps, pointing to a direct interaction between hemes b(595) and d. Whereas in the reduced enzyme no heme d-CO geminate recombination is observed, in the mixed-valence CO-liganded complex with heme b(595) initially oxidized, a significant part of photodissociated CO does not leave the protein and recombines with heme d within a few hundred ps. This caging effect may indicate that ferrous heme b(595) provides a transient binding site for carbon monoxide within one of the routes by which the dissociated ligand leaves the protein. Taken together, the data indicate physical proximity of the hemes d and b(595) and corroborate the possibility of a functional cooperation between the two hemes in the dioxygen-reducing center of cytochrome bd.
通过飞秒多色瞬态吸收光谱法研究了来自大肠杆菌的bd型醌氧化酶氧还原位点中两个高自旋血红素之间的相互作用。通过在血红素b(595)的α带中对完全还原的未配位或CO结合的细胞色素bd进行选择性激发,确定亚铁血红素b(595)先前未鉴定的Soret带以440 nm为中心。b型血红素的氧化还原状态强烈影响由血红素d的CO光解离诱导的吸收变化的线形和动力学。在还原酶中,血红素d的CO光解离在几皮秒内扰动亚铁细胞色素b(595)的光谱,表明血红素b(595)和d之间存在直接相互作用。虽然在还原酶中未观察到血红素d-CO双分子复合,但在血红素b(595)最初被氧化的混合价CO配位复合物中,相当一部分光解离的CO不会离开蛋白质,并在几百皮秒内与血红素d重新结合。这种笼效应可能表明亚铁血红素b(595)在解离配体离开蛋白质的途径之一中为一氧化碳提供了一个瞬态结合位点。综上所述,数据表明血红素d和b(595)在物理上接近,并证实了细胞色素bd的双氧还原中心中两个血红素之间功能协作的可能性。