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具有针对Wnt信号通路的特异性抑制活性的异香豆素衍生物的分离与鉴定以及代谢组学特征分析 。(原文结尾不完整,翻译可能存在一定局限性)

Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of .

作者信息

Pellissier Léonie, Koval Alexey, Marcourt Laurence, Ferreira Queiroz Emerson, Lecoultre Nicole, Leoni Sara, Quiros-Guerrero Luis-Manuel, Barthélémy Morgane, Duivelshof Bastiaan L, Guillarme Davy, Tardy Sébastien, Eparvier Véronique, Perron Karl, Chave Jérôme, Stien Didier, Gindro Katia, Katanaev Vladimir, Wolfender Jean-Luc

机构信息

School of Pharmaceutical Sciences, University of Geneva, CMU, Geneva, Switzerland.

Institute of Pharmaceutical Sciences of Western Switzerland, University of Geneva, CMU, Geneva, Switzerland.

出版信息

Front Chem. 2021 Aug 12;9:664489. doi: 10.3389/fchem.2021.664489. eCollection 2021.

Abstract

The Wnt signaling pathway controls multiple events during embryonic development of multicellular animals and is carcinogenic when aberrantly activated in adults. Breast cancers are dependent on Wnt pathway overactivation mostly through dysregulation of pathway component protein expression, which necessitates the search for therapeutically relevant compounds targeting them. Highly diverse microorganisms as endophytes represent an underexplored field in the therapeutic natural products research. In the present work, the objective was to explore the chemical diversity and presence of selective Wnt inhibitors within a unique collection of fungi isolated as foliar endophytes from the long-lived tropical palm . The fungi were cultured, extracted with ethyl acetate, and screened for their effects on the Wnt pathway and cell proliferation. The endophytic strain was prioritized for scaled-up fractionation based on its selective activity. Application of geometric transfer from analytical HPLC conditions to semi-preparative scale and use of dry load sample introduction enabled the isolation of 15 pure compounds in a single step. Among the molecules identified, five are original natural products described for the first time, and six are new to this species. An active fraction obtained by semi-preparative HPLC was re-purified by UHPLC-PDA using a 1.7 µm phenyl column. 75 injections of 8 µg were necessary to obtain sufficient amounts of each compound for structure elucidation and bioassays. Using this original approach, in addition to the two major compounds, a third minor compound identified as ()-(-)-5-hydroxymellein (18) was obtained, which was found to be responsible for the significant Wnt inhibition activity recorded. Further studies of this compound and its structural analogs showed that only 18 acts in a highly specific manner, with no acute cytotoxicity. This compound is notably selective for upstream components of the Wnt pathway and is able to inhibit the proliferation of three triple negative breast cancer cell lines. In addition to the discovery of Wnt inhibitors of interest, this study contributes to better characterize the biosynthetic potential of .

摘要

Wnt信号通路在多细胞动物胚胎发育过程中控制着多个事件,在成体中异常激活时具有致癌性。乳腺癌大多通过通路组成蛋白表达失调而依赖于Wnt通路的过度激活,这就需要寻找针对它们的具有治疗相关性的化合物。作为内生菌的高度多样的微生物是治疗性天然产物研究中一个未被充分探索的领域。在本研究中,目标是在从长寿热带棕榈叶中分离得到的独特真菌集合中探索化学多样性以及选择性Wnt抑制剂的存在情况。对这些真菌进行培养,用乙酸乙酯提取,并筛选它们对Wnt通路和细胞增殖的影响。基于其选择性活性,将内生菌株优先用于放大分级分离。将分析型高效液相色谱条件下的几何转移应用于半制备规模,并使用干样进样,使得能够一步分离出15种纯化合物。在鉴定出的分子中,有5种是首次描述的原始天然产物,6种对该物种来说是新的。通过半制备高效液相色谱得到的活性馏分使用1.7 µm苯基柱通过超高效液相色谱-光电二极管阵列检测器进行再纯化。为了获得足够量的每种化合物用于结构解析和生物测定,需要进行75次8 µg的进样。使用这种原始方法,除了两种主要化合物外,还得到了第三种次要化合物,鉴定为()-(-)-5-羟基水合氧化麦角硫因(18),发现它是所记录的显著Wnt抑制活性的原因。对该化合物及其结构类似物的进一步研究表明,只有18以高度特异性的方式起作用,没有急性细胞毒性。该化合物对Wnt通路的上游成分具有显著的选择性,并且能够抑制三种三阴性乳腺癌细胞系的增殖。除了发现有意义的Wnt抑制剂外,本研究还有助于更好地表征[具体真菌名称未给出]的生物合成潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a22/8397479/b8da93213eb7/fchem-09-664489-g001.jpg

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