Pfenninger S, Antholine W E, Barr M E, Hyde J S, Kroneck P M, Zumft W G
Biophysics Research Institute, Medical College of Wisconsin, Milwaukee 53226, USA.
Biophys J. 1995 Dec;69(6):2761-9. doi: 10.1016/S0006-3495(95)80149-9.
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)].
利用时域电子顺磁共振(EPR)获得了来自施氏假单胞菌的一氧化二氮还原酶(N2OR)中双核混合价态[CuA(1.5)…CuA(1.5)] [S = 1/2中心的弛豫时间,该酶存在于铜发色团生物合成缺陷的TN5突变体中、一种合成混合价态配合物中以及1型和2型铜配合物中。数据证实,在6 - 25 K温度范围内,N2OR中铜中心的固有电子自旋 - 晶格弛豫时间T1异常短。在最佳情况下,测量到从g垂直方向到g平行方向T1仅增加了两倍。使用双指数函数和拉伸指数函数都获得了饱和恢复数据的优化拟合。对于突变体N2OR,自旋 - 晶格弛豫率的温度依赖性在拉伸指数模型下约为T5.0,在使用两个指数之和的模型下为T3.3和T3.9。这些T1是混合价态[CuA(1.5)…CuA(1.5)]中心所固有的,未观察到野生型N2OR中第二个铜中心与[CuA(1.5)…CuA(1.5)]中心之间的相互作用。N2OR混合价态中心的T1不仅比单体平面正方形Cu(II)配合物的T1短,而且比合成混合价态配合物Cu2(N[CH2CH2NHCH2CH2NHCH2CH2]3N)的T1短。短T1归因于1型铜的振动模式和/或[CuA(1.5)…CuA(1.5)]中的金属 - 金属相互作用。