首页> 美国卫生研究院文献>Biophysical Journal >Electron spin-lattice relaxation of the Cu(1.5) ... Cu(1.5) dinuclear copper center in nitrous oxide reductase.
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Electron spin-lattice relaxation of the Cu(1.5) ... Cu(1.5) dinuclear copper center in nitrous oxide reductase.

机译:一氧化二氮还原酶中Cu(1.5)... Cu(1.5)双核铜中心的电子自旋晶格弛豫。

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摘要

Relaxation times have been obtained with time-domain EPR for the dinuclear mixed valence [CuA(1.5) ... CuA(1.5)[ S = 1/2 center in nitrous oxide reductase, N2OR, from Pseudomonas stutzeri, in the TN5 mutant defective in copper chromophore biosynthesis, in a synthetic mixed valence complex, and in type 1 and 2 copper complexes. Data confirmed that the intrinsic electron spin-lattice relaxation time, T1, for N2OR in the temperature range of 6-25 K is unusually short for copper centers. At best, a twofold increase of T1 from g perpendicular to g parallel was measured. Optimized fits of the saturation-recovery data were obtained using both double-exponential and stretched-exponential functions. The temperature dependence of the spin-lattice relaxation rate of mutant N2OR is about T5.0 with the stretched-exponential model or T3.3 and T3.9 for the model using the sum of two exponentials. These T1s are intrinsic to the mixed valence [CuA(1.5) ... CuA(1.5)] center, and no interaction of the second copper center in wild-type N2OR with the [CuA(1.5) ... CuA(1.5)] center has been observed. The T1 of the mixed valence center of N2OR is not only shorter than for monomeric square planar Cu(II) complexes, but also shorter than for a synthetic mixed valence complex, Cu2(N[CH2CH2NHCH2CH2NHCH2CH2]3N). The short T1 is attributed to the vibrational modes of type 1 copper and/or the metal-metal interaction in [CuA(1.5) ... CuA(1.5)].
机译:TN5突变缺陷型的双核混合价[CuA(1.5)... CuA(1.5)[S = 1/2中心的亚硝酸还原酶N2OR中的S = 1/2中心)的弛豫时间已通过时域EPR获得。在铜生色团生物合成中,在合成的混合价络合物中以及在1型和2型铜络合物中。数据证实,对于N2OR,在6-25 K的温度范围内,本征电子自旋晶格弛豫时间T1对于铜中心而言异常短。充其量,可以测量出T1从垂直于g平行于g的两倍增加。使用双指数函数和拉伸指数函数均可获得饱和度恢复数据的最佳拟合。使用拉伸指数模型时,突变体N2OR的自旋晶格弛豫速率对温度的依赖性约为T5.0,对于使用两个指数之和的模型,其T3.3和T3.9约为T5.0。这些T1是混合价[CuA(1.5)... CuA(1.5)]中心固有的,并且野生型N2OR中的第二个铜中心与[CuA(1.5)... CuA(1.5)没有相互作用]中心已被观察到。 N 2 OR的混合价中心的T 1不仅短于单体方形平面Cu(II)配合物,而且短于合成的混合价配合物Cu 2(N [CH 2 CH 2 NHCH 2 CH 2 NHCH 2 CH 2] 3 N)。短T1归因于[CuA(1.5)... CuA(1.5)]中1型铜的振动模式和/或金属-金属相互作用。

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