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艾瑞那辛A及相关杯伞烷二萜类化合物:其神经保护和抗癌活性的分子多样性及作用机制

Erinacine A and related cyathane diterpenoids: Molecular diversity and mechanisms underlying their neuroprotection and anticancer activities.

作者信息

Bailly Christian, Gao Jin-Ming

机构信息

OncoWitan, Lille, Wasquehal, 59290, France(1).

Shaanxi Key Laboratory of Natural Products & Chemical Biology, College of Chemistry & Pharmacy, Northwest A&F University, Yangling 712100, Shaanxi, People's Republic of China.

出版信息

Pharmacol Res. 2020 Sep;159:104953. doi: 10.1016/j.phrs.2020.104953. Epub 2020 May 30.

Abstract

The presence of a fused 5/6/7 tricyclic core characterizes the group of cyathane diterpene natural products, that include more than 170 compounds, isolated from fungi such as Cyathus africanus and Hericium erinaceus. These compounds have a common biosynthetic precursor (cyatha-3,12-diene) and can be produced bio- or hemi-synthetically, or via total syntheses. Cyathane diterpenes display a range of pharmacological properties, including anti-inflammatory (possibly through binding to the iNOS protein) and neuroprotective effects. Many cyathanes like cyahookerin C, cyathin Q and cyafranines B and G can stimulate neurite outgrowth in cells, whereas conversely a few molecules (such as scabronine M) inhibit NGF-stimulated neurite outgrowth. The main anticancer cyathanes are erinacine A and cyathins Q and R, with a capacity to trigger cancer cell death dependent on the production of reactive oxygen species (ROS). These compounds, active both in vitro and in vivo, activate different signaling pathways in tumor cells to induce apoptosis (and autophagy) and to upregulate the expression of several proteins implicated in the organization and functioning of the actin cytoskeleton. An analysis of the functional analogy between erinacine A and other natural products known to interfere with the actin network in a ROS-dependent manner (notably cucurbitacin B) further supports the idea that erinacine A functions as a perturbator of the cytoskeleton organization. Collectively, we provide an overview of the molecular diversity of cyathane diterpenes and the main mechanisms of action of the lead compounds, with the objective to encourage further research with these fungal products. The anticancer potential of erinacine A deserves further attention but it will be necessary to better characterize the implicated targets and signaling pathways.

摘要

具融合的5/6/7三环核心是杯伞烷二萜类天然产物的特征,这类天然产物包括从非洲杯伞和猴头菌等真菌中分离出的170多种化合物。这些化合物有一个共同的生物合成前体(杯伞-3,12-二烯),可以通过生物合成、半合成或全合成来制备。杯伞烷二萜具有一系列药理特性,包括抗炎作用(可能是通过与诱导型一氧化氮合酶蛋白结合)和神经保护作用。许多杯伞烷类化合物,如杯伞钩菌素C、杯伞素Q以及杯伞花素B和G,能够刺激细胞中的神经突生长,而相反,一些分子(如痂囊腔菌素M)则抑制神经生长因子刺激的神经突生长。主要的抗癌杯伞烷类化合物是齿孔酸A以及杯伞素Q和R,它们能够触发癌细胞死亡,这一过程依赖于活性氧(ROS)的产生。这些化合物在体外和体内均有活性,可激活肿瘤细胞中的不同信号通路,从而诱导细胞凋亡(和自噬),并上调几种与肌动蛋白细胞骨架的组织和功能相关的蛋白质的表达。对齿孔酸A与其他已知以ROS依赖方式干扰肌动蛋白网络的天然产物(特别是葫芦素B)之间功能相似性的分析,进一步支持了齿孔酸A作为细胞骨架组织扰动剂发挥作用的观点。我们共同提供了杯伞烷二萜分子多样性及其先导化合物主要作用机制的概述,目的是鼓励对这些真菌产物进行进一步研究。齿孔酸A的抗癌潜力值得进一步关注,但有必要更好地表征相关靶点和信号通路。

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