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S组和T组的枝苷:来自海参的具有独特硫酸化修饰的三萜糖苷;对人乳腺癌的细胞毒性及定量构效关系

Cladolosides of Groups S and T: Triterpene Glycosides from the Sea Cucumber with Unique Sulfation; Human Breast Cancer Cytotoxicity and QSAR.

作者信息

Silchenko Alexandra S, Zelepuga Elena A, Chingizova Ekaterina A, Menchinskaya Ekaterina S, Tabakmakher Kseniya M, Kalinovsky Anatoly I, Avilov Sergey A, Popov Roman S, Dmitrenok Pavel S, Kalinin Vladimir I

机构信息

G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far Eastern Branch of the Russian Academy of Sciences, Pr. 100-letya Vladivostoka 159, 690022 Vladivostok, Russia.

出版信息

Mar Drugs. 2025 Jun 25;23(7):265. doi: 10.3390/md23070265.

Abstract

Four new minor monosulfated triterpene penta- and hexaosides, cladolosides S (), S (), T (), and T (), were isolated from the Vietnamese sea cucumber (Sclerodactylidae, Dendrochirotida). The structures of the compounds were established based on extensive analysis of 1D and 2D NMR spectra as well as HR-ESI-MS data. Cladodosides S (), S () and T (), T () are two pairs of dehydrogenated/hydrogenated compounds that share identical carbohydrate chains. The oligosaccharide chain of cladolosides of the group S is new for the sea cucumber glycosides due to the presence of xylose residue attached to C-4 Xyl1 in combination with a sulfate group at C-6 MeGlc4. The oligosaccharide moiety of cladolosides of the group T is unique because of the position of the sulfate group at C-3 of the terminal sugar residue instead of the 3-Me group. This suggests that the enzymatic processes of sulfation and -methylation that occur during the biosynthesis of glycosides can compete with each other. This can presumably occur due to the high level of expression or activity of the enzymes that biosynthesize glycosides. The mosaicism of glycoside biosynthesis (time shifting or dropping out of some biosynthetic stages) may indicate a lack of compartmentalization inside the cells of organism producers, leading to a certain degree of randomness in enzymatic reactions; however, this also offers the advantage of providing chemical diversity of the glycosides. Analysis of the hemolytic activity of a series of 26 glycosides from revealed some patterns of structure-activity relationships: the presence or absence of 3-methyl groups has no significant impact, hexaosides, which are the final products of biosynthesis and predominant compounds of the glycosidic fraction of , are more active than their precursors, pentaosides, and the minor tetraosides, cladolosides of the group A, are weak membranolytics and therefore are not synthesized in large quantities. Two glycosides from , cladolosides D () and H (), display selectivity of cytotoxic action toward triple-negative breast cancer cells MDA-MB-231, while remaining non-toxic in relation to normal mammary cells MCF-10A. Quantitative structure-activity relationships (QSAR) were calculated based on the correlational analysis of the physicochemical properties and structural features of the glycosides and their hemolytic and cytotoxic activities against healthy MCF-10A cells and cancer MCF-7 and MDA-MB-231 cell lines. QSAR highlighted the complexity of the relationships as the cumulative effect of many minor contributions from individual descriptors can have a significant impact. Furthermore, many structural elements were found to have different effects on the activity of the glycosides against different cell lines. The opposing effects were especially pronounced in relation to hormone-dependent breast cancer cells MCF-7 and triple-negative MDA-MB-231 cells.

摘要

从越南海参(硬指海参科,枝手目)中分离出四种新的单硫酸化三萜戊糖苷和己糖苷,即枝手苷S₁、S₂、T₁和T₂。通过对一维和二维核磁共振谱以及高分辨电喷雾电离质谱数据进行广泛分析,确定了这些化合物的结构。枝手苷S₁、S₂和T₁、T₂是两对脱氢/氢化化合物,它们具有相同的碳水化合物链。由于在C-4木糖上连接有木糖残基,并在C-6甲基葡萄糖上带有硫酸基团,S组枝手苷的寡糖链对于海参糖苷来说是新的。T组枝手苷的寡糖部分很独特,因为末端糖残基C-3位上是硫酸基团而不是3-甲基。这表明在糖苷生物合成过程中发生的硫酸化和O-甲基化酶促过程可能相互竞争。这可能是由于生物合成糖苷的酶表达水平或活性较高所致。糖苷生物合成的镶嵌性(某些生物合成阶段的时间偏移或缺失)可能表明生物生产者细胞内缺乏区室化,导致酶促反应存在一定程度的随机性;然而,这也具有提供糖苷化学多样性的优势。对来自海参的一系列26种糖苷的溶血活性分析揭示了一些构效关系模式:3-甲基的存在与否没有显著影响,作为生物合成最终产物且是海参糖苷部分主要化合物的己糖苷比其前体戊糖苷更具活性,而A组的次要四糖苷枝手苷是弱膜溶解剂,因此不会大量合成。来自海参的两种糖苷,枝手苷D₁和H₁,对三阴性乳腺癌细胞MDA-MB-231表现出细胞毒性作用的选择性,而对正常乳腺细胞MCF-10A仍无毒性。基于对糖苷的物理化学性质和结构特征与其对健康MCF-10A细胞以及癌症MCF-7和MDA-MB-231细胞系的溶血和细胞毒性活性的相关性分析,计算了定量构效关系(QSAR)。QSAR突出了这种关系的复杂性,因为各个描述符的许多微小贡献的累积效应可能具有重大影响。此外,发现许多结构元素对糖苷针对不同细胞系的活性有不同影响。这种相反的影响在激素依赖性乳腺癌细胞MCF-7和三阴性MDA-MB-231细胞中尤为明显。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0bd/12299463/38779f0e09f7/marinedrugs-23-00265-g001.jpg

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