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用于筛选11β-羟基类固醇脱氢酶1抑制剂的酵母检测法。

Yeast-based assays for screening 11β-HSD1 inhibitors.

作者信息

Vanella Rosario, Callari Roberta, Weston Anna, Heider Harald, Schwab Markus S, Kübler Eric

机构信息

University of Applied Sciences Northwestern Switzerland, Gründenstrasse 40, 4132, Muttenz, Switzerland.

Evolva SA, Duggingerstrasse 23, 4153, Reinach, Switzerland.

出版信息

Microb Cell Fact. 2016 Mar 15;15:52. doi: 10.1186/s12934-016-0450-6.

Abstract

BACKGROUND

Intracellular metabolism of glucocorticoid hormones plays an important role in the pathogenesis of metabolic syndrome and regulates, among many physiological processes, collagen metabolism in skin. At the peripheral level the concentration of active glucocorticoids is mainly regulated by the 11β-hydroxysteroid dehydrogenase 1 (11β-HSD1) enzyme, involved in the conversion of cortisone into the biologically active hormone cortisol. Cortisol interacts with the glucocorticoid receptor and regulates the expression of different classes of genes within the nucleus. Due to its implication in glucocorticoid metabolism, the inhibition of 11β-HSD1 activity has become a dominant strategy for the treatment of metabolic syndrome. Moreover, inhibitors of this target enzyme can be used for development of formulations to counteract skin ageing. Here we present the construction of two yeast cell based assays that can be used for the screening of novel 11β-HSD1 inhibitors.

RESULTS

The yeast Saccharomyces cerevisiae is used as a host organism for the expression of human 11β-HSD1 as well as a genetically encoded assay system that allows intracellular screening of molecules with 11β-HSD1 inhibitory activity. As proof of concept the correlation between 11β-HSD1 inhibition and fluorescent output signals was successfully tested with increasing concentrations of carbenoxolone and tanshinone IIA, two known 11β-HSD1 inhibitors. The first assay detects a decrease in fluorescence upon 11β-HSD1 inhibition, whereas the second assay relies on stabilization of yEGFP upon inhibition of 11β-HSD1, resulting in a positive read-out and thus minimizing the rate of false positives sometimes associated with read-outs based on loss of signals. Specific inhibition of the ABC transporter Pdr5p improves the sensitivity of the assay strains to cortisone concentrations by up to 60 times.

CONCLUSIONS

Our yeast assay strains provide a cost-efficient and easy to handle alternative to other currently available assays for the screening of 11β-HSD1 inhibitors. These assays are designed for an initial fast screening of large numbers of compounds and enable the selection of cell permeable molecules with target inhibitory activity, before proceeding to more advanced selection processes. Moreover, they can be employed in yeast synthetic biology platforms to reconstitute heterologous biosynthetic pathways of drug-relevant scaffolds for simultaneous synthesis and screening of 11β-HSD1 inhibitors at intracellular level.

摘要

背景

糖皮质激素的细胞内代谢在代谢综合征的发病机制中起重要作用,并且在许多生理过程中调节皮肤中的胶原蛋白代谢。在外周水平,活性糖皮质激素的浓度主要由11β-羟基类固醇脱氢酶1(11β-HSD1)调节,该酶参与可的松向生物活性激素皮质醇的转化。皮质醇与糖皮质激素受体相互作用并调节细胞核内不同类别基因的表达。由于其在糖皮质激素代谢中的作用,抑制11β-HSD1活性已成为治疗代谢综合征的主要策略。此外,这种靶酶的抑制剂可用于开发对抗皮肤衰老的制剂。在此,我们展示了两种基于酵母细胞的检测方法的构建,可用于筛选新型11β-HSD1抑制剂。

结果

酿酒酵母用作表达人11β-HSD1的宿主生物体以及用于细胞内筛选具有11β-HSD1抑制活性分子的遗传编码检测系统。作为概念验证,用两种已知的11β-HSD1抑制剂甘草次酸和丹参酮IIA的浓度增加成功测试了11β-HSD1抑制与荧光输出信号之间的相关性。第一种检测方法检测到11β-HSD1抑制后荧光降低,而第二种检测方法依赖于11β-HSD1抑制后yEGFP的稳定,导致阳性读数,从而最大限度地减少有时与基于信号损失的读数相关的假阳性率。ABC转运蛋白Pdr5p的特异性抑制可将检测菌株对可的松浓度的敏感性提高多达60倍。

结论

我们的酵母检测菌株为筛选11β-HSD1抑制剂的其他现有检测方法提供了一种经济高效且易于操作的替代方法。这些检测方法旨在对大量化合物进行初步快速筛选,并能够在进行更高级的筛选过程之前选择具有靶抑制活性的细胞可渗透分子。此外,它们可用于酵母合成生物学平台,以重建药物相关支架的异源生物合成途径,以便在细胞内水平同时合成和筛选11β-HSD1抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7d9/4791775/6fa3120a3cd9/12934_2016_450_Fig1_HTML.jpg

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