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Structural Elucidation and Synthesis of Eudistidine A: An Unusual Polycyclic Marine Alkaloid that Blocks Interaction of the Protein Binding Domains of p300 and HIF-1α

机译:Eudistidine A的结构阐明和合成:一种异常的多环海洋生物碱其阻断p300和HIF-1α的蛋白质结合域的相互作用。

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摘要

Low oxygen environments are a hallmark of solid tumors, and transcription of many hypoxia-responsive genes needed for survival under these conditions is regulated by the transcription factor HIF-1 (hypoxia-inducible factor 1). Activation of HIF-1 requires binding of its α-subunit (HIF-1α) to the transcriptional coactivator protein p300. Inhibition of the p300/HIF-1α interaction can suppress HIF-1 activity. A screen for inhibitors of the protein binding domains of p300 (CH1) and HIF-1α (C-TAD) identified an extract of the marine ascidian Eudistoma sp. as active. Novel heterocyclic alkaloids eudistidines A (>1) and B (>2) were isolated from the extract, and their structures assigned by spectroscopic analyses. They contain an unprecedented tetracyclic core composed of two pyrimidine rings fused with an imidazole ring. Eudistidine A (>1) was synthesized in a concise four-step sequence featuring a condensation/cyclization reaction cascade between 4-(2-aminophenyl)pyrimidin-2-amine (>3) and 4-methoxy-phenylglyoxal (>4), while eudistidine B (>2) was synthesized in a similar fashion with glyoxylic acid (>5) in place of >4. Naturally occurring eudistidine A (>1) effectively inhibited CH1/C-TAD binding with an IC50 of 75 μM, and synthetic >1 had similar activity. The eudistidine A (>1) scaffold, which can be synthesized in a concise, scalable manner, may provide potential therapeutic lead compounds or molecular probes to study p300/HIF-1α interactions and the role these proteins play in tumor response to low oxygen conditions. The unique structural scaffolds and functional group arrays often found in natural products make these secondary metabolites a rich source of new compounds that can disrupt critical protein−protein binding events.
机译:低氧环境是实体瘤的标志,在这种条件下生存所需的许多低氧应答基因的转录受转录因子HIF-1(低氧诱导因子1)调控。 HIF-1的激活需要其α亚基(HIF-1α)与转录共激活蛋白p300结合。抑制p300 /HIF-1α相互作用可以抑制HIF-1活性。筛选p300(CH1)和HIF-1α(C-TAD)蛋白结合域抑制剂的方法鉴定出了海洋海鞘Eudistoma sp的提取物。活跃。从提取物中分离出了新型杂环生物碱大麦碱A(> 1 )和B(> 2 ),并通过光谱分析确定了它们的结构。它们包含前所未有的四环核,该核由两个与咪唑环稠合的嘧啶环组成。以简明的四步顺序合成了Eudistidine A(> 1 ),其特征是4-(2-氨基苯基)嘧啶-2-胺(> 3 )和4-甲氧基-苯基乙二醛(> 4 ),而奥地替丁B(> 2 )与乙醛酸(> 5 )相似地合成代替> 4 。天然存在的eudistidine A(> 1 )有效抑制CH1 / C-TAD结合,IC50为75μM,合成的> 1 具有相似的活性。可以简明,可扩展的方式合成的eudistidine A(> 1 )支架可以提供潜在的治疗性先导化合物或分子探针,以研究p300 /HIF-1α相互作用以及这些蛋白在肿瘤对低氧条件的反应。天然产物中常见的独特结构支架和官能团阵列使这些次级代谢产物成为新化合物的丰富来源,这些新化合物可破坏关键的蛋白质-蛋白质结合事件。

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