Machonkin T E, Zhang H H, Hedman B, Hodgson K O, Solomon E I
Department of Chemistry, Stanford Synchrotron Radiation Laboratory, Stanford University, California 94305, USA.
Biochemistry. 1998 Jun 30;37(26):9570-8. doi: 10.1021/bi980434v.
Ceruloplasmin is unique among the multicopper oxidases in that in addition to the usual copper stoichiometry of one Type 1 copper site and a Type 2/Type 3 trinuclear copper cluster, it contains two other Type 1 sites. This assignment of copper sites, based on copper quantitation, sequence alignment, and crystallography, is difficult to reconcile with the observed spectroscopy. Furthermore, some chemical or spectroscopic differences in ceruloplasmin have been reported depending on the method of purification. We have studied the resting (as isolated by a fast, one-step procedure) and peroxide-oxidized forms of human ceruloplasmin. Using a combination of X-ray absorption spectroscopy, a chemical assay, magnetic susceptibility, electron paramagnetic resonance spectroscopy, and absorption spectroscopy, we have determined that peroxide-oxidized ceruloplasmin contains one permanently reduced Type 1 site. This site is shown to have a reduction potential of approximately 1.0 V. Thus, one of the additional Type 1 sites in ceruloplasmin cannot be catalytically relevant in the form of the enzyme studied. Furthermore, the resting form of the enzyme contains an additional reducing equivalent, which is distributed among the remaining five copper sites as expected from their relative potentials. This may indicate that the resting form of ceruloplasmin in plasma under aerobic conditions is a four-electron oxidized form, which is consistent with its function in the four-electron reduction of dioxygen to water.
铜蓝蛋白在多铜氧化酶中独具特色,除了具有一个1型铜位点和一个2型/3型三核铜簇的常见铜化学计量比外,它还含有另外两个1型位点。基于铜定量、序列比对和晶体学对铜位点的这种分配,很难与观察到的光谱学结果相协调。此外,根据纯化方法的不同,已有报道称铜蓝蛋白存在一些化学或光谱差异。我们研究了人铜蓝蛋白的静息形式(通过快速一步法分离)和过氧化物氧化形式。通过结合X射线吸收光谱、化学分析、磁化率、电子顺磁共振光谱和吸收光谱,我们确定过氧化物氧化的铜蓝蛋白含有一个永久还原的1型位点。该位点的还原电位约为1.0 V。因此,铜蓝蛋白中额外的一个1型位点在所研究的酶形式中不具有催化相关性。此外,该酶的静息形式含有一个额外的还原当量,正如根据其余五个铜位点的相对电位所预期的那样,它分布在这些位点之间。这可能表明在有氧条件下血浆中铜蓝蛋白的静息形式是一种四电子氧化形式,这与其将双氧四电子还原为水的功能是一致的。