Hiroya K, Ishigooka M, Shimizu T, Hatano M
Institute for Chemical Reaction Science, Tohoku University, Sendai, Japan.
FASEB J. 1992 Jan 6;6(2):749-51. doi: 10.1096/fasebj.6.2.1347023.
Polar amino acids in the (putative) distal site are well conserved in P450s. For example, Glu318 for P450d is well conserved as either Glu or Asp for P450s, and Thr319 for P450d is also conserved for P450s. We have studied how mutations at Glu318 and Thr319 of P450d influence the catalytic activity toward methanol associated with the activation of O2. Catalytic activities of Glu318Asp, Glu318Ala, and Thr319Ala mutants toward methanol were 60, 25, and 38%, respectively, compared with that of the wild type. O2 consumption and NADPH oxidation rates of each mutants varied corresponding to the catalytic activities. However, surprisingly, efficiency (16-40%) of incorporated O to the substrate vs. consumed O2 for the Glu318Ala and Thr319Ala mutants were higher than that (9%) of the wild type. In addition, H2O2, which is produced from uncoupling for the wild-type P450d, was not observed for reaction of the Glu318Ala and Thr319Ala mutants. It seemed that consumed O2 was partially reduced to 2 mol of H2O by 4-electron transfer from NADPH for the wild-type and Thr319Ala mutant. However, for the two Glu318 mutants, it appeared that the consumed O2 was not reduced in the same way. It was thus suggested that the conserved Glu318 and Thr319 of P450d are not essential for the activation of O2 in the methanol oxidation. Role of the water molecule or the methanol molecule in the catalytic function was implied.
(假定的)远侧位点的极性氨基酸在细胞色素P450中高度保守。例如,细胞色素P450d的Glu318在细胞色素P450中保守为Glu或Asp,细胞色素P450d的Thr319在细胞色素P450中也保守。我们研究了细胞色素P450d的Glu318和Thr319突变如何影响与O2活化相关的对甲醇的催化活性。与野生型相比,Glu318Asp、Glu318Ala和Thr319Ala突变体对甲醇的催化活性分别为60%、25%和38%。每个突变体的O2消耗和NADPH氧化速率随催化活性而变化。然而,令人惊讶的是,Glu318Ala和Thr319Ala突变体将O掺入底物相对于消耗的O2的效率(16 - 40%)高于野生型(9%)。此外,野生型细胞色素P450d解偶联产生的H2O2在Glu318Ala和Thr319Ala突变体的反应中未观察到。对于野生型和Thr319Ala突变体,消耗的O2似乎通过从NADPH进行4电子转移部分还原为2摩尔H2O。然而,对于两个Glu318突变体,消耗的O2似乎不是以相同方式还原的。因此表明细胞色素P450d中保守的Glu318和Thr319对于甲醇氧化中O2的活化不是必需的。暗示了水分子或甲醇分子在催化功能中的作用。