Department of Chemistry & Biochemistry, University of Arizona, Tucson, Arizona 85721, USA.
J Phys Chem B. 2012 Feb 16;116(6):1942-50. doi: 10.1021/jp210578f. Epub 2012 Feb 3.
Intramolecular electron transfer (IET) between the molybdenum and heme centers of vertebrate sulfite oxidase (SO) is proposed to be a key step in the catalytic cycle of the enzyme. However, the X-ray crystallographic distance between these centers, R(MoFe) = 32.3 Å, appears to be too long for the rapid IET rates observed in liquid solution. The Mo and heme domains are linked by a flexible tether, and it has been proposed that dynamic interdomain motion brings the two metal centers closer together and thereby facilitates rapid IET. To date, there have been no direct distance measurements for SO in solution that would support or contradict this model. In this work, pulsed electron-electron double resonance (ELDOR) and relaxation induced dipolar modulation enhancement (RIDME) techniques were used to obtain information about R(MoFe) in the Mo(V)Fe(III) state of wild type recombinant human SO in frozen glassy solution. Surprisingly, the data obtained suggest a fixed structure with R(MoFe) = 32 Å, similar to that determined by X-ray crystallography for chicken SO, although the orientation of the R(MoFe) radius-vector with respect to the heme center was found to be somewhat different. The implications of these findings for the flexible tether model are discussed.
分子内电子转移(IET)在脊椎动物亚硫酸盐氧化酶(SO)的钼和血红素中心之间被认为是酶催化循环中的关键步骤。然而,这些中心之间的 X 射线晶体学距离 R(MoFe)= 32.3 Å,似乎对于在液相中观察到的快速 IET 速率来说太长了。钼和血红素结构域通过柔性连接链连接,有人提出动态的结构域间运动使两个金属中心更接近,从而促进快速 IET。迄今为止,对于溶液中的 SO 还没有直接的距离测量,这将支持或反驳这个模型。在这项工作中,使用脉冲电子-电子双共振(ELDOR)和弛豫诱导偶极调制增强(RIDME)技术,获得了在冷冻玻璃态溶液中野生型重组人 SO 的 Mo(V)Fe(III)态下 R(MoFe)的信息。令人惊讶的是,获得的数据表明存在一个固定的结构,R(MoFe)= 32 Å,类似于鸡 SO 的 X 射线晶体学确定的结构,尽管发现 R(MoFe)半径矢量相对于血红素中心的取向有些不同。这些发现对柔性连接链模型的意义进行了讨论。