Department of Life Sciences and Systems Biology, University of Turin, Turin, 10123, Italy.
Protein Sci. 2022 Sep;31(9):e4389. doi: 10.1002/pro.4389.
Human aromatase is the cytochrome P450 catalyzing the conversion of androgens into estrogens in a three steps reaction essential to maintain steroid hormones balance. Here we report the capture and spectroscopic characterization of its compound I (Cpd I), the main reactive species in cytochromes P450. The typical spectroscopic transitions indicating the formation of Cpd I are detected within 0.8 s when mixing aromatase with meta-chloroperoxybenzoic acid. The estrogen product is obtained from the same reaction mixture, demonstrating the involvement of Cpd I in aromatization reaction. Site-directed mutagenesis is applied to the acid-alcohol pair D309 and T310 and to R192, predicted to be part of the proton relay network. Mutants D309N and R192Q do not lead to Cpd I with an associated loss of activity, confirming that these residues are involved in proton delivery for Cpd I generation. Cpd I is captured for T310A mutant and shows 2.9- and 4.4-fold faster rates of formation and decay, respectively, compared to wild-type (WT). However, its activity is lower than the WT and a larger amount of H O is produced during catalysis, indicating that T310 has an essential role in proton gating for generation of Cpd 0 and Cpd I and for their stabilization. The data provide new evidences on the role of threonine belonging to the conserved "acid-alcohol" pair and known to be crucial for oxygen activation in cytochromes P450.
人芳香酶是细胞色素 P450 中的一种,能够将雄激素催化转化为雌激素,这是维持甾体激素平衡的三个步骤反应的关键。在这里,我们报告了其化合物 I(Cpdl)的捕获和光谱特征,Cpdl 是细胞色素 P450 中主要的反应性物质。当将芳香酶与间氯过苯甲酸混合时,在 0.8s 内检测到指示 Cpdl 形成的典型光谱跃迁。从相同的反应混合物中获得雌激素产物,证明 Cpdl 参与了芳香化反应。对酸-醇对 D309 和 T310 以及预测为质子传递网络一部分的 R192 进行了定点突变。突变体 D309N 和 R192Q 不会导致 Cpdl 的形成,同时也失去了活性,这证实了这些残基参与了 Cpdl 生成的质子传递。Cpdl 被捕获用于 T310A 突变体,与野生型(WT)相比,其形成和衰减的速率分别快 2.9 倍和 4.4 倍。然而,其活性低于 WT,并且在催化过程中产生了更多的 H2O,这表明 T310 在生成 Cpdl0 和 CpdlI 及其稳定化方面的质子门控中具有重要作用。这些数据为属于保守的“酸-醇”对的苏氨酸的作用提供了新的证据,已知该对在细胞色素 P450 中的氧活化中至关重要。