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分析酶合成的三萜类化合物(包括菖蒲酮和非天然的角鲨烯)的维生素 D 受体结合亲和力。

Analysis of vitamin D receptor binding affinities of enzymatically synthesized triterpenes including ambrein and unnatural onoceroids.

机构信息

Graduate School of Science and Technology, Niigata University, Niigata, Japan.

Department of Pharmaceutical Engineering, Faculty of Engineering, Toyama Prefectural University, Imizu, Japan.

出版信息

Sci Rep. 2024 Jan 16;14(1):1419. doi: 10.1038/s41598-024-52013-7.

Abstract

Onoceroids are a rare family of triterpenes. One representative onoceroid is ambrein, which is the main component of ambergris used as a traditional medicine. We have previously identified the onoceroid synthase, BmeTC, in Bacillus megaterium and succeeded in creating ambrein synthase by introducing mutations into BmeTC. Owing to the structural similarity of ambrein to vitamin D, a molecule with diverse biological activities, we hypothesized that some of the activities of ambergris may be induced by the binding of ambrein to the vitamin D receptor (VDR). We demonstrated the VDR binding ability of ambrein. By comparing the structure-activity relationships of triterpenes with both the VDR affinity and osteoclastic differentiation-promoting activity, we observed that the activity of ambrein was not induced via the VDR. Therefore, some of the activities of ambergris, but not all, can be attributed to its VDR interaction. Additionally, six unnatural onoceroids were synthesized using the BmeTC reactions, and these compounds exhibited higher VDR affinity than that of ambrein. Enzymatic syntheses of onoceroid libraries will be valuable in creating a variety of bioactive compounds beyond ambergris.

摘要

角鲨烯类是一种罕见的三萜烯。一种代表性的角鲨烯是龙涎香醇,它是龙涎香的主要成分,龙涎香被用作传统药物。我们之前在巨大芽孢杆菌中鉴定了角鲨烯合酶 BmeTC,并通过对 BmeTC 进行突变成功地创建了龙涎香醇合酶。由于龙涎香醇与具有多种生物活性的维生素 D 分子在结构上相似,我们假设龙涎香的某些活性可能是由于龙涎香醇与维生素 D 受体 (VDR) 的结合而引起的。我们证明了龙涎香醇与 VDR 的结合能力。通过比较三萜烯与 VDR 亲和力和破骨细胞分化促进活性的构效关系,我们观察到龙涎香醇的活性不是通过 VDR 诱导的。因此,龙涎香的一些活性(而非全部)可以归因于其与 VDR 的相互作用。此外,使用 BmeTC 反应合成了六种非天然角鲨烯类化合物,这些化合物与龙涎香醇相比具有更高的 VDR 亲和力。角鲨烯类化合物文库的酶促合成对于创造各种具有生物活性的化合物将是有价值的,而不仅仅是龙涎香。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c45e/10792010/3bcd709c239c/41598_2024_52013_Fig1_HTML.jpg

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