Research Institute for Farm Animal Biology (FBN), 18196 Dummerstorf, Germany.
Veterinary Clinic for Reproductive Medicine and Neonatology, Faculty of Veterinary Medicine, Justus Liebig University, 35392 Giessen, Germany.
Int J Mol Sci. 2024 Jan 24;25(3):1440. doi: 10.3390/ijms25031440.
Estrogens play critical roles in embryonic development, gonadal sex differentiation, behavior, and reproduction in vertebrates and in several human cancers. Estrogens are synthesized from testosterone and androstenedione by the endoplasmic reticulum membrane-bound P450 aromatase/cytochrome P450 oxidoreductase complex (CYP19/CPR). Here, we report the characterization of novel mammalian CYP19 isoforms encoded by CYP19 gene copies. These CYP19 isoforms are all defined by a combination of mutations in the N-terminal transmembrane helix (E42K, D43N) and in helix C of the catalytic domain (P146T, F147Y). The mutant CYP19 isoforms show increased androgen conversion due to the KN transmembrane helix. In addition, the TY substitutions in helix C result in a substrate preference for androstenedione. Our structural models suggest that CYP19 mutants may interact differently with the membrane (affecting substrate uptake) and with CPR (affecting electron transfer), providing structural clues for the catalytic differences.
雌激素在脊椎动物的胚胎发育、性腺性别分化、行为和生殖以及几种人类癌症中发挥着关键作用。雌激素是由内质网膜结合的 P450 芳香酶/细胞色素 P450 氧化还原酶复合物 (CYP19/CPR) 从睾酮和雄烯二酮合成的。在这里,我们报道了由 CYP19 基因拷贝编码的新型哺乳动物 CYP19 同工型的特征。这些 CYP19 同工型均由 N 端跨膜螺旋 (E42K、D43N) 和催化结构域中的 C 螺旋 (P146T、F147Y) 中的突变组合定义。突变的 CYP19 同工型由于 KN 跨膜螺旋而显示出增加的雄激素转化。此外,C 螺旋中的 TY 取代导致对雄烯二酮的底物偏好。我们的结构模型表明,CYP19 突变体可能与膜(影响底物摄取)和 CPR(影响电子转移)以不同的方式相互作用,为催化差异提供结构线索。