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胆甾烷-5α,6β-二醇-3-磺酸酯的化学合成及生化性质:胆甾烷-5α,6β-二醇-3β-硫酸盐的非水解类似物。

Chemical synthesis and biochemical properties of cholestane-5α,6β-diol-3-sulfonate: A non-hydrolysable analogue of cholestane-5α,6β-diol-3β-sulfate.

机构信息

Cancer Research Center of Toulouse (CRCT), Inserm, CNRS, University of Toulouse, Team INOV: Cholesterol Metabolism and Therapeutic Innovations, Toulouse, France; Equipe labellisée par la Ligue Nationale contre le Cancer, France; French network for Nutrition physical Acitivity And Cancer Research (NACRe network), France.

Cancer Research Center of Toulouse (CRCT), Inserm, CNRS, University of Toulouse, Team INOV: Cholesterol Metabolism and Therapeutic Innovations, Toulouse, France; Equipe labellisée par la Ligue Nationale contre le Cancer, France.

出版信息

J Steroid Biochem Mol Biol. 2023 Nov;234:106396. doi: 10.1016/j.jsbmb.2023.106396. Epub 2023 Sep 6.

Abstract

Cholestane-3β,5α,6β-triol (CT) is a primary metabolite of 5,6-epoxycholesterols (5,6-EC) that is catalyzed by the cholesterol-5,6-epoxide hydrolase (ChEH). CT is a well-known biomarker for Niemann-Pick disease type C (NP-C), a progressive inherited neurodegenerative disease. On the other hand, CT is known to be metabolized by the 11β-hydroxysteroid-dehydrogenase of type 2 (11β-HSD2) into a tumor promoter named oncosterone that stimulates the growth of breast cancer tumors. Sulfation is a major metabolic transformation leading to the production of sulfated oxysterols. The production of cholestane-5α,6β-diol-3β-O-sulfate (CDS) has been reported in breast cancer cells. However, no data related to CDS biological properties have been reported so far. These studies have been hampered because sulfate esters of sterols and steroids are rapidly hydrolyzed by steroid sulfatase to give free steroids and sterols. In order to get insight into the biological properties of CDS, we report herein the synthesis and the characterization of cholestane-5α,6β-diol-3β-sulfonate (CDSN), a non-hydrolysable analogue of CDS. We show that CDSN is a potent inhibitor of 11β-HSD2 that blocks oncosterone production on cell lysate. The inhibition of oncosterone biosynthesis of a whole cell assay was observed but results from the blockage by CDSN of the uptake of CT in MCF-7 cells. While CDSN inhibits MCF-7 cell proliferation, we found that it potentiates the cytotoxic activity of post-lanosterol cholesterol biosynthesis inhibitors such as tamoxifen and PBPE. This effect was associated with an increase of free sterols accumulation and the appearance of giant multilamellar bodies, a structural feature reminiscent of Type C Niemann-Pick disease cells and consistent with a possible inhibition by CDSN of NPC1. Altogether, our data showed that CDSN is biologically active and that it is a valuable tool to study the biological properties of CDS and more specifically its impact on immunity and viral infection.

摘要

胆甾烷-3β,5α,6β-三醇(CT)是胆固醇-5,6-环氧化物水解酶(ChEH)催化的 5,6-环氧胆固醇的主要代谢物。CT 是尼曼-匹克病 C 型(NP-C)的一种众所周知的生物标志物,NP-C 是一种进行性遗传性神经退行性疾病。另一方面,CT 已知可被 11β-羟甾醇脱氢酶 2 型(11β-HSD2)代谢为一种名为oncosterone 的肿瘤促进剂,刺激乳腺癌肿瘤的生长。硫酸化是导致硫酸化氧化固醇产生的主要代谢转化。已报道在乳腺癌细胞中产生胆甾烷-5α,6β-二醇-3β-O-硫酸酯(CDS)。然而,迄今为止尚无关于 CDS 生物学特性的相关数据。这些研究受到阻碍,因为类固醇和甾体的硫酸酯迅速被类固醇硫酸酯酶水解,生成游离类固醇和甾体。为了深入了解 CDS 的生物学特性,我们在此报告了胆甾烷-5α,6β-二醇-3β-磺酸盐(CDSN)的合成和表征,这是 CDS 的一种不可水解类似物。我们表明,CDSN 是 11β-HSD2 的有效抑制剂,可阻止细胞裂解物中 oncosterone 的产生。在全细胞测定中观察到抑制 oncosterone 生物合成,但结果是 CDSN 阻止 MCF-7 细胞摄取 CT。虽然 CDSN 抑制 MCF-7 细胞增殖,但我们发现它增强了后羊毛甾醇胆固醇生物合成抑制剂(如他莫昔芬和 PBPE)的细胞毒性活性。这种作用与游离甾醇积累的增加以及巨多层状体的出现有关,这是一种类似于 C 型尼曼-匹克病细胞的结构特征,与 CDSN 可能抑制 NPC1 一致。总之,我们的数据表明 CDSN 具有生物活性,是研究 CDS 生物学特性的宝贵工具,特别是研究其对免疫和病毒感染的影响。

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