Sevrioukova I, Truan G, Peterson J A
Department of Biochemistry, University of Texas Southwestern Medical Center at Dallas 75235-9038, USA.
Arch Biochem Biophys. 1997 Apr 15;340(2):231-8. doi: 10.1006/abbi.1997.9895.
Cytochrome P450BM-3, a catalytically self-sufficient fatty acid monooxygenase from Bacillus megaterium, is a multidomain protein containing heme, FAD, and FMN. Previous attempts to reconstitute the fatty acid monooxygenase activity of intact P450BM-3 utilizing equimolar concentrations of the separate heme (BMP) and reductase (BMR) domains, have been unsuccessful because two-electron reduced FMN, which rapidly accumulates, is incapable of electron transfer to the heme iron. The present study of the reconstitution of the monooxygenase activity of P450BM-3 utilized combinations of the different functional domains of P450BM-3. For this purpose, the FAD/NADPH- and FMN-binding domains of P450BM-3 as well as the combination of the heme- and FMN-binding domains (BMP/FMN) have been expressed and purified. The reconstitution systems, consisting of either BMP/FMN and FAD domains or BMP, FMN, and FAD domains, were still less effective than the holoenzyme, P450BM-3, but were much more effective than a system consisting of BMP and BMR. The maximal rate of oxidation of palmitic acid by the newly developed reconstitution systems is still only approximately 5% of the activity of the holoenzyme. The reconstitution systems produced omega-1, omega-2, and omega-3 monohydroxy palmitic acid, but not the secondary products of palmitic acid hydroxylation observed with the holoenzyme. The physical cause of the inability to reconstitute fully the maximal activity of the holoenzyme as well as the lack of secondary product formation is not presently understood.
细胞色素P450BM-3是一种来自巨大芽孢杆菌的具有催化自足性的脂肪酸单加氧酶,是一种包含血红素、黄素腺嘌呤二核苷酸(FAD)和黄素单核苷酸(FMN)的多结构域蛋白。此前尝试利用等摩尔浓度的单独血红素(BMP)和还原酶(BMR)结构域来重建完整的P450BM-3的脂肪酸单加氧酶活性,但未成功,因为快速积累的双电子还原FMN无法将电子转移至血红素铁。本研究对P450BM-3单加氧酶活性的重建利用了P450BM-3不同功能结构域的组合。为此,已表达并纯化了P450BM-3的FAD/烟酰胺腺嘌呤二核苷酸磷酸(NADPH)结合结构域以及FMN结合结构域,以及血红素和FMN结合结构域的组合(BMP/FMN)。由BMP/FMN和FAD结构域或BMP、FMN和FAD结构域组成的重建系统仍不如全酶P450BM-3有效,但比由BMP和BMR组成的系统有效得多。新开发的重建系统对棕榈酸的最大氧化速率仍仅约为全酶活性的5%。重建系统产生了ω-1、ω-2和ω-3单羟基棕榈酸,但未产生全酶所观察到的棕榈酸羟基化二级产物。目前尚不清楚无法完全重建全酶最大活性以及缺乏二级产物形成的物理原因。