Siu-Caldera M L, Sekimoto H, Peleg S, Nguyen C, Kissmeyer A M, Binderup L, Weiskopf A, Vouros P, Uskoković M R, Reddy G S
Department of Pediatrics, Women & Infants' Hospital of Rhode Island, Brown University School of Medicine, Providence 02905, USA.
J Steroid Biochem Mol Biol. 1999 Dec 15;71(3-4):111-21. doi: 10.1016/s0960-0760(99)00130-2.
1alpha,25-dihydroxy-20-epi-vitamin D3 (1alpha,25(OH)2-20-epi-D3), the C-20 epimer of the natural hormone 1alpha,25(OH)2D3, is several fold more potent than the natural hormone in inhibiting cell growth and inducing cell differentiation. At present, the various mechanisms responsible for the enhanced biological activities of this unique vitamin D3 analog are not fully understood. In our present study we compared the target tissue metabolism of 1alpha,25(OH)2D3 with that of 1alpha,25(OH)2-20-epi-D3 using the technique of isolated perfused rat kidney. The results indicated that the C-24 oxidation pathway plays a major role in the metabolism of both compounds in the rat kidney. However, it was noted that the concentrations of two of the intermediary metabolites of 1alpha,25(OH)2-20-epi-D3, namely, 1alpha,24(R),25(OH)3-20-epi-D3 and 1alpha,25(OH)2-24-oxo-20-epi-D3 in the kidney perfusate, exceeded the concentrations of the corresponding intermediary metabolites of 1alpha,25(OH)2D3. Furthermore, 1alpha,25(OH)2-24-oxo-20-epi-D3 induces the conformation of the vitamin D receptor similar to that induced by its parent analog and is nearly as potent as its parent in inducing transactivation of a gene construct containing the human osteocalcin vitamin D-responsive element. We conclude that 1alpha,25(OH)2-20-epi-D3 by itself is not metabolically stable when compared to 1alpha,25(OH)2D3, but it acquires its metabolic stability because of the reduced rate of catabolism of its intermediary metabolites. Furthermore, 1alpha,25(OH)2-24-oxo-20-epi-D3, the stable bioactive intermediary metabolite plays a significant role in generating the enhanced biological activities ascribed to 1alpha,25(OH)2-20-epi-D3.
1α,25 - 二羟基 - 20 - 表维生素D3(1α,25(OH)2 - 20 - epi - D3)是天然激素1α,25(OH)2D3的C - 20差向异构体,在抑制细胞生长和诱导细胞分化方面比天然激素强几倍。目前,这种独特的维生素D3类似物增强生物活性的各种机制尚未完全了解。在我们目前的研究中,我们使用离体灌注大鼠肾脏技术比较了1α,25(OH)2D3和1α,25(OH)2 - 20 - epi - D3的靶组织代谢。结果表明,C - 24氧化途径在大鼠肾脏中这两种化合物的代谢中起主要作用。然而,值得注意的是,1α,25(OH)2 - 20 - epi - D3的两种中间代谢产物,即1α,24(R),25(OH)3 - 20 - epi - D3和1α,25(OH)2 - 24 - 氧代 - 20 - epi - D3在肾脏灌注液中的浓度超过了1α,25(OH)2D3相应中间代谢产物的浓度。此外,1α,25(OH)2 - 24 - 氧代 - 20 - epi - D3诱导维生素D受体的构象与母体类似物诱导的构象相似,并且在诱导含有人类骨钙素维生素D反应元件的基因构建体的反式激活方面几乎与母体一样有效。我们得出结论,与1α,25(OH)2D3相比,1α,25(OH)2 - 20 - epi - D3本身代谢不稳定,但由于其中间代谢产物的分解代谢速率降低而获得了代谢稳定性。此外,稳定的生物活性中间代谢产物1α,25(OH)2 - 24 - 氧代 - 20 - epi - D3在产生归因于1α,所描述的增强生物活性方面起着重要作用。25(OH)2 - 20 - epi - D3