Departments of Medicinal Chemistry Box 357610 and ‡Chemistry Box 351700, University of Washington Seattle , Washington 98195 United States.
Biochemistry. 2014 Mar 11;53(9):1428-34. doi: 10.1021/bi401547j. Epub 2014 Feb 27.
The heme-containing cytochrome P450s exhibit isoform-dependent ferric spin equilibria in the resting state and differential substrate-dependent spin equilibria. The basis for these differences is not well understood. Here, magnetic circular dichroism (MCD) reveals significant differences in the resting low spin ligand field of CYPs 3A4, 2E1, 2C9, 125A1, and 51B1, which indicates differences in the strength of axial water ligation to the heme. The near-infrared bands that specifically correspond to charge-transfer porphyrin-to-metal transitions span a range of energies of nearly 2 kcal/mol. In addition, the experimentally determined MCD bands are not entirely in agreement with the expected MCD energies calculated from electron paramagnetic resonance parameters, thus emphasizing the need for the experimental data. MCD marker bands of the high spin heme between 500 and 680 nm were also measured and suggest only a narrow range of energies for this ensemble of high spin Cys(S(-)) → Fe(3+) transitions among these isoforms. The differences in axial ligand energies between CYP isoforms of the low spin states likely contribute to the energetics of substrate-dependent spin state perturbation. However, these ligand field energies do not correlate with the fraction of high spin vs low spin in the resting state enzyme, suggestive of differences in water access to the heme or isoform-dependent differences in the substrate-free high spin states as well.
含血红素的细胞色素 P450 同工酶在静止状态下表现出依赖同工型的亚铁自旋平衡和差异的底物依赖性自旋平衡。这些差异的基础尚未得到很好的理解。在这里,磁圆二色性 (MCD) 揭示了 CYP3A4、2E1、2C9、125A1 和 51B1 中静止低自旋配体场的显著差异,这表明轴向水与血红素的结合强度存在差异。专门对应于电荷转移卟啉到金属跃迁的近红外带跨越了近 2 千卡/摩尔的能量范围。此外,实验确定的 MCD 带与从电子顺磁共振参数计算出的预期 MCD 能量不完全一致,因此强调了对实验数据的需求。还测量了高自旋血红素在 500 到 680nm 之间的 MCD 标记带,这表明在这些同工型中,这种高自旋 Cys(S(-)) → Fe(3+) 跃迁的集合只有一个狭窄的能量范围。低自旋状态下 CYP 同工型之间轴向配体能量的差异可能导致底物依赖性自旋状态扰动的能量学发生变化。然而,这些配体场能量与静止状态下酶中高自旋与低自旋的比例无关,这表明血红素的水进入或无底物的高自旋状态的同工型依赖性差异。