首页> 美国卫生研究院文献>Biochemical Journal >A continuous-wave electron-nuclear double resonance (X-band) study of the Cu2+ sites of particulate methane mono-oxygenase of Methylococcus capsulatus (strain M) in membrane and pure dopamine beta-mono-oxygenase of the adrenal medulla.
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A continuous-wave electron-nuclear double resonance (X-band) study of the Cu2+ sites of particulate methane mono-oxygenase of Methylococcus capsulatus (strain M) in membrane and pure dopamine beta-mono-oxygenase of the adrenal medulla.

机译:连续波电子核双共振(X波段)研究膜中的膜球菌甲基甲烷球菌(菌株M)的甲烷甲烷单加氧酶和肾上腺髓质的纯多巴胺β-单加氧酶的Cu2 +位点。

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摘要

All methanotrophic bacteria express a membrane-bound (particulate) methane mono-oxygenase (pMMO). In the present study, we have investigated pMMO in membrane fragments from Methylococcus capsulatus (strain M). pMMO contains a typical type-2 Cu(2+) centre with the following EPR parameters: g(z) 2.24, g(x,y) 2.06, A(Cu)(z) 19.0 mT and A(Cu)(x,y) 1.0 mT. Simulation of the Cu(2+) spectrum yielded a best match by using four equivalent nitrogens (A(N)=1.5 mT, 42 MHz). Incubation with ferricyanide neither changed nor increased the amount of EPR-active Cu(2+), in contrast with other reports. The EPR visible copper seems not to be part of any cluster, as judged from the microwave power saturation behaviour. Continuous-wave electron-nuclear double resonance (CW ENDOR; 9.4 GHz, 5-20 K) experiments at g( perpendicular) of the Cu(II) spectrum show a weak coupling to protons with an A(H) of 2.9 MHz that corresponds to a distance of 3.8 A (1 A identical with 0.1 nm), assuming that it is a purely dipolar coupling. Incubation in (2)H(2)O leads to a significant decrease in these (1)H-ENDOR intensities, showing that these protons are exchangeable. This result strongly suggests that the EPR visible copper site of pMMO is accessible to solvent, which was confirmed by the chelation of the Cu(2+) by diethyldithiocarbamic acid. The (1)H and (14)N hyperfine coupling constants confirm a histidine ligation of the EPR visible copper site in pMMO. The hyperfine structure in the ENDOR or EPR spectra of pMMO is not influenced by the inhibitors azide, cyanide or ammonia, indicating that they do not bind to the EPR visible copper. We compared pMMO with the type-2 Cu(2+) enzyme, dopamine beta-mono-oxygenase (DbetaM). For DbetaM, it is assumed that the copper site is solvent-accessible. CW ENDOR shows similar weakly coupled and (2)H(2)O-exchangeable protons (2.9 MHz), as observed in pMMO, as well as the strongly coupled nitrogens (40 MHz) from the co-ordinating N of the histidines in DbetaM. In conclusion, the resting EPR visible Cu in pMMO is not part of a trinuclear cluster, as has been suggested previously.
机译:所有甲烷营养细菌均表达膜结合(颗粒)甲烷单加氧酶(pMMO)。在本研究中,我们调查了来自荚膜甲基球菌(M株)的膜片段中的pMMO。 pMMO包含一个典型的2型Cu(2+)中心,具有以下EPR参数:g(z)2.24,g(x,y)2.06,A(Cu)(z)19.0 mT和A(Cu)(x, y)1.0 mT。通过使用四个当量氮(A(N)= 1.5 mT,42 MHz)对Cu(2+)光谱进行模拟得出了最佳匹配。与其他报告相反,与铁氰化物一起孵育既不会改变也不会增加EPR活性Cu(2+)的量。根据微波功率饱和行为判断,EPR可见铜似乎不属于任何簇。在Cu(II)光谱的g(垂直)处进行的连续波电子核双共振(CW ENDOR; 9.4 GHz,5-20 K)实验显示与2.9 MHz A(H)的质子弱耦合假设它是纯偶极耦合,则距离为3.8 A(1 A等于0.1 nm)。在(2)H(2)O中孵育会导致这些(1)H-ENDOR强度显着降低,表明这些质子是可交换的。该结果强烈表明,pMMO的EPR可见铜位点可用于溶剂,这已通过二乙基二硫代氨基甲酸与Cu(2+)的螯合得到证实。 (1)H和(14)N超精细偶联常数证实了pMMO中EPR可见铜位点的组氨酸连接。 pMMO的ENDOR或EPR光谱中的超精细结构不受叠氮化物,氰化物或氨水抑制剂的影响,表明它们不与EPR可见铜结合。我们将pMMO与2型Cu(2+)酶,多巴胺β-单加氧酶(DbetaM)进行了比较。对于DbetaM,假定铜位是溶剂可及的。 CW ENDOR显示出相似的弱耦合和(2)H(2)O可交换质子(2.9 MHz),如在pMMO中观察到的,以及来自DbetaM中组氨酸N的配位的强耦合氮(40 MHz) 。总之,如前所述,pMMO中静止的EPR可见Cu不是三核簇的一部分。

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