Kluetz M D, Schmidt P G
Biophys J. 1980 Feb;29(2):283-93. doi: 10.1016/S0006-3495(80)85132-0.
Proton nuclear magnetic resonance relaxation measurements were made over the range 4.7--220 MHz for aqueous solutions of hog kidney diamine oxidase. The values of 1/T1 give rise in two distinct dispersions, at 16 and 75 MHz, whereas 1/T2 displays a minimum at 20 MHz. The temperature dependence of relaxation rates in all cases yield apparent activation energies less than 0.6 kcal/mol. These data indicate to us that the two Cu(II) ions of diamine oxidase are intrinsically different in terms of their electronic relaxation characteristics and hence, chemical environments. Low field limits of the two electronic relaxation times are 2 and 10 ns, with one of these correlation times being frequency dependent. The value of the frequency-dependent electronic relaxation time is governed by interactions that are modulated by a process having a correlation time of 5 ps.
对猪肾二胺氧化酶水溶液在4.7 - 220 MHz范围内进行了质子核磁共振弛豫测量。1/T1的值在16 MHz和75 MHz处出现两个明显的色散,而1/T2在20 MHz处出现最小值。在所有情况下,弛豫率的温度依赖性产生的表观活化能小于0.6千卡/摩尔。这些数据向我们表明,二胺氧化酶的两个Cu(II)离子在电子弛豫特性以及化学环境方面本质上是不同的。两个电子弛豫时间的低场极限分别为2纳秒和10纳秒,其中一个相关时间与频率有关。频率相关的电子弛豫时间的值由一个具有5皮秒相关时间的过程调制的相互作用所决定。