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New from Old: Thorectandrin Alkaloids in a Southern Australian Marine Sponge

机译:来自旧的新的旧症状 - 澳大利亚海绵南部的生物碱

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摘要

Thorectandra choanoides (CMB-01889) was prioritized as a source of promising new chemistry from a library of 960 southern Australian marine sponge extracts, using a global natural products social (GNPS) molecular networking approach. The sponge was collected at a depth of 45 m. Chemical fractionation followed by detailed spectroscopic analysis led to the discovery of a new tryptophan-derived alkaloid, thorectandrin A (1), with the GNPS cluster revealing a halo of related alkaloids 1a–1n. In considering biosynthetic origins, we propose that Thorectandrachoanoides (CMB-01889) produces four well-known alkaloids, 6-bromo-1′,8-dihydroaplysinopsin (2), 6-bromoaplysinopsin (3), aplysinopsin (4), and 1′,8-dihydroaplysinopsin (10), all of which are susceptible to processing by a putative indoleamine 2,3-dioxygenase-like (IDO) enzyme to 1a–1n. Where the 1′,8-dihydroalkaloids 2 and 10 are fully transformed to stable ring-opened thorectandrins 1 and 1a–1b, and 1h–1j, respectively, the conjugated precursors 3 and 4 are transformed to highly reactive Michael acceptors that during extraction and handling undergo complete transformation to artifacts 1c–1g, and 1k–1n, respectively. Knowledge of the susceptibility of aplysinopsins as substrates for IDOs, and the relative reactivity of Michael acceptor transformation products, informs our understanding of the pharmaceutical potential of this vintage marine pharmacophore. For example, the cancer tissue specificity of IDOs could be exploited for an immunotherapeutic response, with aplysinopsins transforming in situ to Michael acceptor thorectandrins, which covalently bind and inhibit the enzyme.
机译:Thorectandra Choanoides(CMB-01889)优先考虑来自澳大利亚南部澳大利亚海绵提取物图书馆的新化学的来源,采用全球天然产品社会(GNPS)分子网络方法。海绵收集在45米的深度。化学分馏之后进行了详细的光谱分析,导致了一种发现新的色氨酸衍生的生物碱,Thorectrin A(1),具有NNPS簇,揭示相关生物碱1a-1n的晕。在考虑生物合成起源时,我们建议将Thorectandra提出Choanoides(CMB-01889)产生四种众所周知的生物碱,6-BROMO-1',8-二氢血管体(2),6-溴蔗糖素(3),APLYSINOPSIN(4)和1',8-二氢血管缺(10),所有这些都易于通过推定的吲哚胺2,3-二氧合酶样(IDO)酶至1A-1N来处理。其中1',8-二氢烷酮醇2和10完全转化为稳定的环形钍和1A-1b,以及1H-1J,将共轭前体3和4转化为在提取期间的高反应性迈克尔受体中处理分别处理完全转换为伪影1C-1G和1K-1N。了解Aplysinopsins作为IDO的基材的易感性,以及迈克尔受体转化产品的相对反应性,请了解我们对该复古海洋药程的药物潜力的理解。例如,IDO的癌症组织特异性可以利用免疫治疗反应,其原位转化为迈克尔受体ronectrins,其共价结合和抑制酶。

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