Kaila Ville R I, Johansson Mikael P, Sundholm Dage, Laakkonen Liisa, Wiström Mårten
Helsinki Bioenergetics Group, Programme of Structural Biology and Biophysics, Institute of Biotechnology, University of Helsinki, Helsinki, Finland.
Biochim Biophys Acta. 2009 Apr;1787(4):221-33. doi: 10.1016/j.bbabio.2009.01.002.
The CuB metal center is at the core of the active site of the heme-copper oxidases, comprising a copper atom ligating three histidine residues one of which is covalently bonded to a tyrosine residue. Using quantum chemical methodology, we have studied the CuB site in several redox and ligand states proposed to be intermediates of the catalytic cycle. The importance of the His-Tyr crosslink was investigated by comparing energetics, charge, and spin distributions between systems with and without the crosslink. The His-Tyr bond was shown to decrease the proton affinity and increase the electron affinity of both Tyr-244 and the copper. A previously unnoticed internal electronic equilibrium between the copper atom and the tyrosine was observed, which seems to be coupled to the unique structure of the system. In certain states the copper and Tyr-244 compete for the unpaired electron, the localization of which is determined by the oxygenous ligand of the copper. This electronic equilibrium was found to be sensitive to the presence of a positive charge 10 A away from the center, simulating the effect of Lys-319 in the K-pathway of proton transfer. The combined results provide an explanation for why the heme-copper oxidases need two pathways of proton uptake, and why the K-pathway is active only in the second half of the reaction cycle.
细胞色素b型氧化酶活性位点的核心是CuB金属中心,它由一个与三个组氨酸残基配位的铜原子组成,其中一个组氨酸残基与一个酪氨酸残基共价结合。我们运用量子化学方法,研究了催化循环中间体的几种氧化还原和配体状态下的CuB位点。通过比较有和没有交联的体系之间的能量、电荷和自旋分布,研究了His-Tyr交联的重要性。结果表明,His-Tyr键降低了Tyr-244和铜的质子亲和力并增加了它们的电子亲和力。观察到铜原子和酪氨酸之间以前未被注意到的内部电子平衡,这似乎与体系的独特结构相关。在某些状态下,铜和Tyr-244争夺未成对电子,其定位由铜的含氧配体决定。发现这种电子平衡对距离中心10埃处正电荷的存在很敏感,模拟了质子转移K途径中Lys-319的作用。综合结果解释了为什么细胞色素b型氧化酶需要两条质子摄取途径,以及为什么K途径仅在反应循环的后半段才活跃。