Department of Chemistry and Vanderbilt Institute of Chemical Biology and, Vanderbilt University, Nashville, TN 37235, USA.
J Lipid Res. 2013 Apr;54(4):1135-43. doi: 10.1194/jlr.M035733. Epub 2013 Feb 4.
Recent studies suggest that 7-dehydrocholesterol (7-DHC)-derived oxysterols play important roles in the pathophysiology of Smith-Lemli-Opitz syndrome (SLOS), a metabolic disorder that is caused by defective 3β-hydroxysterol-Δ(7)-reductase (DHCR7). Although 14 oxysterols have been identified as the primary products of 7-DHC autoxidation in organic solution, the metabolic fate of these oxysterols in a biological environment has not yet been elucidated. Therefore, we incubated these primary 7-DHC oxysterols in control Neuro2a and control human fibroblast cells and identified metabolites of these oxysterols by HPLC-MS. We also incubated Dhcr7-deficient Neuro2a cells and fibroblasts from SLOS patients with isotopically labeled 7-DHC (d(7)-7-DHC). The observation of matching d(0)- and d(7) peaks in HPLC-MS confirmed the presence of true metabolites of 7-DHC after excluding the possibility of ex vivo oxidation. The metabolites of primary 7-DHC oxysterols were found to contribute to the majority of the metabolic profile of 7-DHC in cells. Furthermore, based on this new data, we identified three new 7-DHC-derived metabolites in the brain of Dhcr7-KO mice. Our studies suggest that 7-DHC peroxidation is a major source of oxysterols observed in cells and in vivo and that the stable metabolites of primary 7-DHC oxysterols can be used as markers of 7-DHC peroxidation in these biological systems.
最近的研究表明,7-脱氢胆固醇(7-DHC)衍生的氧化固醇在 Smith-Lemli-Opitz 综合征(SLOS)的病理生理学中发挥重要作用,SLOS 是一种代谢紊乱疾病,由 3β-羟甾醇-Δ(7)-还原酶(DHCR7)缺陷引起。尽管已经在有机溶液中鉴定出 14 种氧化固醇作为 7-DHC 自动氧化的主要产物,但这些氧化固醇在生物环境中的代谢命运尚未阐明。因此,我们将这些主要的 7-DHC 氧化固醇在对照的 Neuro2a 和对照的人成纤维细胞中孵育,并通过 HPLC-MS 鉴定这些氧化固醇的代谢物。我们还将 Dhcr7 缺陷型 Neuro2a 细胞和来自 SLOS 患者的成纤维细胞与同位素标记的 7-DHC(d(7)-7-DHC)孵育。在 HPLC-MS 中观察到匹配的 d(0)-和 d(7)峰证实了 7-DHC 的真实代谢物的存在,排除了体外氧化的可能性。初级 7-DHC 氧化固醇的代谢物被发现有助于细胞中 7-DHC 代谢谱的大部分。此外,基于这些新数据,我们在 Dhcr7-KO 小鼠的大脑中鉴定出三种新的 7-DHC 衍生代谢物。我们的研究表明,7-DHC 过氧化是细胞内和体内观察到的氧化固醇的主要来源,初级 7-DHC 氧化固醇的稳定代谢物可作为这些生物系统中 7-DHC 过氧化的标志物。