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Biological activities of 7-dehydrocholesterol-derived oxysterols: implications for Smith-Lemli-Opitz syndrome

机译:7-脱氢胆固醇衍生的氧固醇的生物活性:对史密斯-Lemli-Opitz综合征的影响

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摘要

Smith-Lemli-Opitz syndrome (SLOS) is a metabolic and developmental disorder caused by mutations in the gene encoding the enzyme 7-dehydrocholesterol reductase (Dhcr7). This reductase catalyzes the last step in cholesterol biosynthesis, and levels of 7-dehydrocholesterol (7-DHC), the substrate for this enzyme, are elevated in SLOS patients as a result of this defect. Our group has previously shown that 7-DHC is extremely prone to free radical autoxidation, and we identified about a dozen different oxysterols formed from oxidation of 7-DHC. We report here that 7-DHC-derived oxysterols reduce cell viability in a dose- and time-dependent manner, some of the compounds showing activity at sub-micromolar concentrations. The reduction of cell survival is caused by a combination of reduced proliferation and induced differentiation of the Neuro2a cells. The complex 7-DHC oxysterol mixture added to control Neuro2a cells also triggers the gene expression changes that were previously identified in Dhcr7-deficient Neuro2a cells. Based on the identification of overlapping gene expression changes in Dhcr7-deficient and 7-DHC oxysterol-treated Neuro2a cells, we hypothesize that some of the pathophysiological findings in the mouse SLOS model and SLOS patients might be due to accumulated 7-DHC oxysterols.
机译:Smith-Lemli-Opitz综合征(SLOS)是一种代谢和发育疾病,由编码7-脱氢胆固醇还原酶(Dhcr7)的基因突变引起。这种还原酶催化胆固醇合成的最后一步,由于这种缺陷,SLOS患者体内7-脱氢胆固醇(7-DHC)的水平升高,该酶的底物升高。我们的小组先前已证明7-DHC非常容易发生自由基自氧化作用,并且我们鉴定出了由12种7-DHC氧化形成的大约12种不同的氧固醇。我们在这里报告7-DHC衍生的氧固醇以剂量和时间依赖性的方式降低细胞活力,其中一些化合物在亚微摩尔浓度下显示出活性。细胞存活的减少是由Neuro2a细胞增殖减少和诱导分化引起的。添加到控制Neuro2a细胞中的复杂7-DHC氧固醇混合物还触发了先前在Dhcr7缺陷Neuro2a细胞中鉴定出的基因表达变化。基于Dhcr7缺陷和7-DHC氧固醇处理的Neuro2a细胞中重叠基因表达变化的鉴定,我们假设小鼠SLOS模型和SLOS患者的某些病理生理学发现可能是由于7-DHC氧固醇的积累。

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