Rhames F C, Murthy N N, Karlin K D, Blackburn N J
Department of Biochemistry and Molecular Biology, Oregon Graduate Institute of Science and Technology, Beaverton 97006-8921, USA.
J Biol Inorg Chem. 2001 Jun;6(5-6):567-77. doi: 10.1007/s007750100233.
Binding of the Cu(I)-specific ligands 2,6-dimethylphenyl isocyanide (DIMPI) and isopropyl isocyanide (IPI) to the reduced form of peptidylglycine monooxygenase (PHM) is reported. Both ligands bind to the methionine-containing CuM center, eliciting FTIR bands at 2,138 and 2,174 cm(-1), respectively, but appear unable to coordinate at the histidine-containing CuH center in the wild-type enzyme. This chemistry parallels that previously observed for CO binding to the reduced PHM catalytic core (PHMcc). However, in contrast to the CO chemistry, peptide substrate binding did not induce binding of the isocyanide at CuH. XAS confirmed the binding of DIMPI at CuM via the observation of a short Cu-C interaction at 1.87 A and by the lengthening of the Cu-S(methionine) bond length by 0.06 A. Similarly, FTIR studies on DIMPI binding to the M314I and H172A mutant forms of reduced PHMcc confirmed the assignment of the 2,138-cm(-1) IR band as a CuM-DIMPI complex, but surprisingly also showed DIMPI binding to CuH, as indicated by a band at 2,148 cm(-1). An inorganic complex, Cu(1,2-Me2Im)2(DIMPI), was synthesized and its crystal structure was determined as a model for the interaction of isocyanides with imidazole-containing Cu(I) complexes. Comparison of EXAFS data for the protein and model suggests that DIMPI probably binds to CuM in a tilted fashion, similar to that of ethyl isocyanide binding to myoglobin.
据报道,铜(I)特异性配体2,6-二甲基苯基异氰化物(DIMPI)和异丙基异氰化物(IPI)与肽基甘氨酸单加氧酶(PHM)的还原形式结合。两种配体均与含甲硫氨酸的CuM中心结合,分别在2138和2174 cm-1处产生傅里叶变换红外光谱(FTIR)谱带,但似乎无法与野生型酶中含组氨酸的CuH中心配位。这种化学性质与之前观察到的一氧化碳与还原型PHM催化核心(PHMcc)的结合情况相似。然而,与一氧化碳的化学性质不同的是,肽底物结合并未诱导异氰化物在CuH处结合。X射线吸收光谱(XAS)通过观察到1.87 Å处的短Cu-C相互作用以及Cu-S(甲硫氨酸)键长延长0.06 Å,证实了DIMPI在CuM处的结合。同样,对DIMPI与还原型PHMcc的M314I和H172A突变形式结合的FTIR研究证实,2138 cm-1的红外谱带归属于CuM-DIMPI复合物,但令人惊讶的是,也显示出DIMPI与CuH结合,这由2148 cm-1处的谱带表明。合成了一种无机配合物Cu(1,2-Me2Im)2(DIMPI),并确定了其晶体结构,作为异氰化物与含咪唑的铜(I)配合物相互作用的模型。蛋白质和模型的扩展X射线吸收精细结构(EXAFS)数据比较表明,DIMPI可能以倾斜方式与CuM结合,类似于乙基异氰化物与肌红蛋白的结合方式。