Lee Seung Heon, Yu Hee Jeong, Lee Seungwoo, Ryu Doug-Young
College of Veterinary Medicine, BK21plus Program for Creative Veterinary Science Research, and Research Institute for Veterinary Science, Seoul National University, Seoul, 151-742, South Korea.
College of Veterinary Medicine, BK21plus Program for Creative Veterinary Science Research, and Research Institute for Veterinary Science, Seoul National University, Seoul, 151-742, South Korea.
Toxicol Lett. 2015 Dec 3;239(2):81-9. doi: 10.1016/j.toxlet.2015.09.007. Epub 2015 Sep 11.
Cytochrome P450 1A1 (CYP1A1) is a heme-containing enzyme involved in metabolism of xenobiotics. CYP1A1 containing a Gly45Asp substitution has not yet been characterized. Escherichia coli expressing the Gly45Asp variant, as well as the purified variant protein, had lower CYP (i.e., holoenzyme) contents than their wild-type (WT) equivalents. The purified variant protein had reduced heme contents compared with their WT equivalents. Enhanced supplementation of a heme precursor during culture did not increase CYP content in E. coli expressing the variant, but did for the WT. Substitution of Gly45 with other residues, especially those having large side chains, decreased CYP contents of E. coli expressing the variants to a considerable extent. A 3D structure of CYP1A1 indicates that Gly45, along with other residues of the PR region, interacts with Arg77 of β- strand 1-1, which indirectly interacts with heme. Substitution analyses suggest the importance of residues of the PR region and Arg77 in holoenzyme expression. E. coli membrane and mammalian microsomes expressing the Gly45Asp variant, as well as the purified variant protein, had reduced ethoxyresorufin O-dealkylation activities, compared with the WT equivalents. These findings suggest the Gly45Asp substitution results in a structural disturbance of CYP1A1, reducing its holoenzyme formation and catalytic activity.
细胞色素P450 1A1(CYP1A1)是一种参与外源性物质代谢的含血红素酶。含有甘氨酸45天冬氨酸替代的CYP1A1尚未得到表征。表达甘氨酸45天冬氨酸变体的大肠杆菌以及纯化的变体蛋白,其细胞色素P450(即全酶)含量低于其野生型(WT)对应物。与野生型对应物相比,纯化的变体蛋白血红素含量降低。在培养过程中增加血红素前体的补充量,并未增加表达该变体的大肠杆菌中的细胞色素P450含量,但对野生型有增加作用。用其他残基替代甘氨酸45,尤其是那些具有大侧链的残基,会在很大程度上降低表达这些变体的大肠杆菌的细胞色素P450含量。CYP1A1的三维结构表明,甘氨酸45与PR区域的其他残基一起,与β链1-1的精氨酸77相互作用,而精氨酸77又与血红素间接相互作用。替代分析表明PR区域的残基和精氨酸77在全酶表达中的重要性。与野生型对应物相比,表达甘氨酸45天冬氨酸变体的大肠杆菌膜和哺乳动物微粒体以及纯化的变体蛋白,其乙氧异吩恶唑酮O-脱烷基化活性降低。这些发现表明,甘氨酸45天冬氨酸替代导致CYP1A1的结构紊乱,降低其全酶形成和催化活性。