Sawada Natsumi, Kusudo Tatsuya, Sakaki Toshiyuki, Hatakeyama Susumi, Hanada Makoto, Abe Daisuke, Kamao Maya, Okano Toshio, Ohta Miho, Inouye Kuniyo
Division of Food Science and Biotechnology, Graduate School of Agriculture, Kyoto University, Kitashirakawa, Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.
Biochemistry. 2004 Apr 20;43(15):4530-7. doi: 10.1021/bi030207f.
Our previous study revealed that human CYP24A1 catalyzes a remarkable metabolism consisting of both C-23 and C-24 hydroxylation pathways that used both 25(OH)D(3) and 1alpha,25(OH)(2)D(3) as substrates, while rat CYP24A1 showed extreme predominance of the C-24 over C-23 hydroxylation pathway [Sakaki, T., Sawada, N., Komai, K., Shiozawa, S., Yamada, S., Yamamoto, K., Ohyama, Y. and Inouye, K. (2000) Eur. J. Biochem. 267, 6158-6165]. In this study, by using the Escherichia coli expression system for human CYP24A1, we identified 25,26,27-trinor-23-ene-D(3) and 25,26,27-trinor-23-ene-1alpha(OH)D(3) as novel metabolites of 25(OH)D(3) and 1alpha,25(OH)(2)D(3), respectively. These metabolites appear to be closely related to the C-23 hydroxylation pathway, because human CYP24A1 produces much more of these metabolites than does rat CYP24A1. We propose that the C(24)-C(25) bond cleavage occurs by a unique reaction mechanism including radical rearrangement. Namely, after hydrogen abstraction of the C-23 position of 1alpha,25(OH)(2)D(3), part of the substrate-radical intermediate is converted into 25,26,27-trinor-23-ene-1alpha(OH)D(3), while a major part of them is converted into 1alpha,23,25(OH)(3)D(3). Because the C(24)-C(25) bond cleavage abolishes the binding affinity of 1alpha,25(OH)D(3) for the vitamin D receptor, this reaction is quite effective for inactivation of 1alpha,25(OH)D(3).
我们之前的研究表明,人细胞色素P450 24A1(CYP24A1)催化一种显著的代谢过程,该过程由C-23和C-24羟基化途径组成,这两条途径均以25-羟基维生素D3(25(OH)D(3))和1α,25-二羟基维生素D3(1alpha,25(OH)(2)D(3))作为底物,而大鼠CYP24A1在C-24羟基化途径上比C-23羟基化途径具有极高的优势[Sakaki, T., Sawada, N., Komai, K., Shiozawa, S., Yamada, S., Yamamoto, K., Ohyama, Y. and Inouye, K. (2000) Eur. J. Biochem. 267, 6158 - 6165]。在本研究中,通过利用人CYP24A1的大肠杆菌表达系统,我们分别鉴定出25,26,27-三降-23-烯-D3(25,26,27-trinor-23-ene-D(3))和25,26,27-三降-23-烯-1α-羟基维生素D3(25,26,27-trinor-23-ene-1alpha(OH)D(3))为25(OH)D(3)和1alpha,25(OH)(2)D(3)的新代谢产物。这些代谢产物似乎与C-23羟基化途径密切相关,因为人CYP24A1产生的这些代谢产物比大鼠CYP24A1多得多。我们提出,C(24)-C(25)键的断裂是通过一种独特的反应机制发生的,包括自由基重排。也就是说,在1alpha,25(OH)(2)D(3)的C-23位氢被夺取后,部分底物-自由基中间体转化为25,26,27-三降-23-烯-1α-羟基维生素D3,而其中大部分转化为1α,23,25-三羟基维生素D3(1alpha,23,25(OH)(3)D(3))。由于C(24)-C(25)键的断裂消除了1alpha,25(OH)D(3)与维生素D受体的结合亲和力,该反应对于使1alpha,25(OH)D(3)失活非常有效。