Machonkin T E, Musci G, Zhang H H, Bonaccorsi di Patti M C, Calabrese L, Hedman B, Hodgson K O, Solomon E I
Department of Chemistry, Stanford Synchrotron Radiation Laboratory, Stanford University, California 94305, USA.
Biochemistry. 1999 Aug 24;38(34):11093-102. doi: 10.1021/bi990280z.
Chicken ceruloplasmin has been previously reported to display a number of key differences relative to human ceruloplasmin: a lower copper content and a lack of a type 2 copper signal by electron paramagnetic resonance (EPR) spectroscopy. We have studied the copper sites of chicken ceruloplasmin in order to probe the origin of these differences, focusing on two forms of the enzyme: "resting" (as isolated by a fast, one-step procedure) and "peroxide-oxidized". From X-ray absorption, EPR, and UV/visible absorption spectroscopies, we have shown that all of the copper sites are oxidized in peroxide-oxidized chicken ceruloplasmin and that none of the type 1 copper sites display the EPR features typical for type 1 copper sites that lack an axial methionine. In the resting form, the type 2 copper center is reduced. Upon oxidation, it does not appear in the EPR spectrum at 77 K, but it can be observed by using magnetic susceptibility, EPR at approximately 8 K, and magnetic circular dichroism spectroscopy. It displays unusually fast relaxation, indicative of coupling with the adjacent type 3 copper pair of the trinuclear copper cluster. From reductive titrations, we have found that the reduction potential of the type 2 center is higher than those of the other copper sites, thus explaining why it is reduced in the resting form. These results provide new insight into the nature of the additional type 1 copper sites and the redox distribution among copper sites in the different ceruloplasmins relative to other multicopper oxidases.
先前有报道称,鸡血浆铜蓝蛋白与人类血浆铜蓝蛋白存在一些关键差异:铜含量较低,并且通过电子顺磁共振(EPR)光谱法检测不到2型铜信号。我们研究了鸡血浆铜蓝蛋白的铜位点,以探究这些差异的来源,重点关注该酶的两种形式:“静息态”(通过快速一步法分离得到)和“过氧化物氧化态”。通过X射线吸收光谱、EPR光谱和紫外/可见吸收光谱,我们发现过氧化物氧化态的鸡血浆铜蓝蛋白中所有铜位点均被氧化,并且没有一个1型铜位点表现出缺乏轴向甲硫氨酸的1型铜位点的典型EPR特征。在静息态中,2型铜中心被还原。氧化后,它在77 K的EPR光谱中不出现,但可以通过磁化率、约8 K时的EPR光谱和磁圆二色光谱观察到。它表现出异常快速的弛豫,表明与三核铜簇中相邻的3型铜对发生了耦合。通过还原滴定,我们发现2型中心的还原电位高于其他铜位点,这就解释了为什么它在静息态中被还原。这些结果为不同血浆铜蓝蛋白中额外的1型铜位点的性质以及相对于其他多铜氧化酶铜位点之间的氧化还原分布提供了新的见解。