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白桦脂酸是一种过氧化物酶体增殖物激活受体 γ(PPARγ)拮抗剂,能改善葡萄糖摄取,促进成骨并抑制脂肪生成。

Betulinic acid is a PPARγ antagonist that improves glucose uptake, promotes osteogenesis and inhibits adipogenesis.

机构信息

Dipartimento di Scienze del Farmaco, Università degli Studi di Pavia, Via Taramelli 12, 27100, Pavia, Italy.

Istituto di Cristallografia, Consiglio Nazionale delle Ricerche, Via Salaria Km. 29, 300, 00015, Monterotondo Stazione, Roma, Italy.

出版信息

Sci Rep. 2017 Jul 18;7(1):5777. doi: 10.1038/s41598-017-05666-6.

Abstract

PPAR antagonists are ligands that bind their receptor with high affinity without transactivation activity. Recently, they have been demonstrated to maintain insulin-sensitizing and antidiabetic properties, and they serve as an alternative treatment for metabolic diseases. In this work, an affinity-based bioassay was found to be effective for selecting PPAR ligands from the dried extract of an African plant (Diospyros bipindensis). Among the ligands, we identified betulinic acid (BA), a compound already known for its anti-inflammatory, anti-tumour and antidiabetic properties, as a PPARγ and PPARα antagonist. Cell differentiation assays showed that BA inhibits adipogenesis and promotes osteogenesis; either down-regulates or does not affect the expression of a series of adipogenic markers; and up-regulates the expression of osteogenic markers. Moreover, BA increases basal glucose uptake in 3T3-L1 adipocytes. The crystal structure of the complex of BA with PPARγ sheds light, at the molecular level, on the mechanism by which BA antagonizes PPARγ, and indicates a unique binding mode of this antagonist type. The results of this study show that the natural compound BA could be an interesting and safe candidate for the treatment of type 2 diabetes and bone diseases.

摘要

PPAR 拮抗剂是一类高亲和力结合受体但无转录激活活性的配体。最近,它们被证明具有维持胰岛素敏感性和抗糖尿病的特性,可作为代谢性疾病的替代治疗方法。在这项工作中,发现基于亲和力的生物测定法可有效地从非洲植物(Diospyros bipindensis)的干燥提取物中选择 PPAR 配体。在所鉴定的配体中,我们发现桦木酸(BA)是一种已被证明具有抗炎、抗肿瘤和抗糖尿病特性的化合物,是 PPARγ 和 PPARα 的拮抗剂。细胞分化实验表明,BA 抑制脂肪生成并促进成骨;下调或不影响一系列脂肪生成标记物的表达;并上调成骨标记物的表达。此外,BA 增加了 3T3-L1 脂肪细胞的基础葡萄糖摄取。BA 与 PPARγ 复合物的晶体结构从分子水平揭示了 BA 拮抗 PPARγ 的机制,并表明了这种拮抗剂类型的独特结合模式。本研究结果表明,天然化合物 BA 可能是治疗 2 型糖尿病和骨骼疾病的一种有趣且安全的候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d60/5516003/8980727222be/41598_2017_5666_Fig1_HTML.jpg

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