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结构修饰揭示了番薯酰胺F脂肪酸链中C-4羰基的双重功能。

Structural Modifications Reveal Dual Functions of the C-4 Carbonyl Group in the Fatty Acid Chain of Ipomoeassin F.

作者信息

Khosravi Arman, Nnamdi Precious, May Alexa, Slattery Kelsey, Sammelson Robert E, Shi Wei Q

机构信息

Department of Chemistry, Ball State University, Muncie, IN 47306, USA.

Chemistry Department, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Molecules. 2025 Jan 18;30(2):400. doi: 10.3390/molecules30020400.

Abstract

Ipomoeassin F (Ipom-F) is a plant-derived macrocyclic resin glycoside that potently inhibits cancer cell growth through blockage of Sec61-mediated protein translocation at the endoplasmic reticulum. Recently, detailed structural information on how Ipom-F binds to Sec61α was obtained using Cryo-EM, which discovered that polar interactions between asparagine-300 (N300) in Sec61α and four oxygens in Ipom-F are crucial. One of the four oxygens is from the carbonyl group at C-4 of the fatty acid chain. In contrast, our previous structure-activity relationship (SAR) studies suggest that the carbonyl group is not essential. To resolve this discrepancy, we designed and synthesized two new open-chain analogues ( and ); without the C-4 carbonyl had a dramatic activity loss, whereas with an amide functional group was even more potent than Ipom-F. These new SAR data, in conjunction with some previous SAR information, imply two functional roles of the C-4 carbonyl: (1) to form H-bonds with N300; and (2) to regulate interactions of the fatty acid chain with membrane lipids. Impacts of these dual functions on antiproliferation depend on the overall structure of an Ipom-F derivative. Moreover, can serve as a lead compound for developing future amino acid/peptide-modified analogues of Ipom-F with improved therapeutic properties.

摘要

番薯素F(Ipom-F)是一种植物来源的大环树脂糖苷,它通过阻断内质网上Sec61介导的蛋白质转运来有效抑制癌细胞生长。最近,利用冷冻电镜获得了关于Ipom-F如何与Sec61α结合的详细结构信息,发现Sec61α中的天冬酰胺-300(N300)与Ipom-F中的四个氧原子之间的极性相互作用至关重要。这四个氧原子之一来自脂肪酸链C-4位的羰基。相比之下,我们之前的构效关系(SAR)研究表明羰基并非必不可少。为了解决这一差异,我们设计并合成了两种新的开链类似物(和);没有C-4羰基的类似物活性急剧丧失,而带有酰胺官能团的类似物甚至比Ipom-F更有效。这些新的SAR数据,结合一些先前的SAR信息,暗示了C-4羰基的两个功能作用:(1)与N300形成氢键;(2)调节脂肪酸链与膜脂的相互作用。这些双重功能对细胞增殖抑制的影响取决于Ipom-F衍生物的整体结构。此外,可作为先导化合物,用于开发未来具有改善治疗特性的Ipom-F氨基酸/肽修饰类似物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8554/11767275/4d190f67b83a/molecules-30-00400-g001.jpg

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