California Institute of Technology, Pasadena, California 91125, USA.
Nat Chem. 2009 Dec;1(9):711-5. doi: 10.1038/nchem.412.
Many proteins contain copper in a range of coordination environments, where it has various biological roles, such as transferring electrons or activating dioxygen. These copper sites can be classified by their function or spectroscopic properties. Those with a single copper atom are either type 1, with an intense absorption band near 600 nm, or type 2, with weak absorption in the visible region. We have built a novel copper(II) binding site within structurally modified Pseudomonas aeruginosa azurins that does not resemble either existing type, which we therefore call 'type zero'. X-ray crystallographic analysis shows that these sites adopt distorted tetrahedral geometries, with an unusually short Cu–O (G45 carbonyl) bond. Relatively weak absorption near 800 nm and narrow parallel hyperfine splittings in electron paramagnetic resonance spectra are the spectroscopic signatures of type zero copper. Cyclic voltammetric experiments demonstrate that the electron transfer reactivities of type-zero azurins are enhanced relative to that of the corresponding type 2 (C112D) protein.
许多蛋白质在一系列配位环境中含有铜,铜在其中具有多种生物学功能,例如传递电子或激活氧气。这些铜位点可以根据其功能或光谱特性进行分类。那些含有单个铜原子的铜位点要么是类型 1,在近 600nm 处具有强烈的吸收带,要么是类型 2,在可见区域具有较弱的吸收。我们在结构修饰的铜绿假单胞菌天青蛋白中构建了一个新型的铜(II)结合位点,它既不像现有类型之一,因此我们称之为“类型零”。X 射线晶体学分析表明,这些位点采用扭曲的四面体几何形状,具有异常短的 Cu-O(G45 羰基)键。近 800nm 处相对较弱的吸收和电子顺磁共振光谱中狭窄的平行超精细分裂是类型零铜的光谱特征。循环伏安实验表明,与相应的类型 2(C112D)蛋白相比,类型零天青蛋白的电子转移反应性增强。