Department of Biochemistry, McGill University, 3655 Promenade Sir William Osler, Montreal, H3G 1Y6, Quebec, Canada.
Rosalind and Morris Goodman Cancer Research Institute, 1160 Pine Ave W, Montreal, H3A 1A3, Quebec, Canada.
Nucleic Acids Res. 2024 Nov 11;52(20):12701-12711. doi: 10.1093/nar/gkae824.
Molecular staples or interfacial inhibitors are small molecules that exert their activity through co-association with macromolecules leading to various effects on target functions. Some molecules inhibit target activity, while others generate gain-of-function complexes. We and others have previously identified two structurally distinct classes of molecular staples, pateamine A and rocaglates. These molecules inhibit eukaryotic initiation factor (eIF) 4A, a critical RNA helicase required for translation initiation, by simultaneously interacting with both RNA and protein components. Structural insights from members of these two families indicate that they wedge themselves between RNA bases during engagement. To extend our understanding of rocaglates, we investigated the RNA-binding properties of silvestrol, a natural rocaglate distinguished by the presence of a unique dioxanyloxy ring. Our study demonstrates that silvestrol expands the RNA-binding repertoire of rocaglates due to this structural characteristic, providing a rationale for improving synthetic molecular staples targeting eIF4A.
分子钉或界面抑制剂是通过与大分子共同结合发挥作用的小分子,从而对靶功能产生各种影响。有些分子抑制靶标活性,而有些则产生功能获得复合物。我们和其他人之前已经确定了两类结构不同的分子钉,即 pateamine A 和 rocaglates。这些分子通过同时与 RNA 和蛋白质成分相互作用,抑制真核起始因子 (eIF) 4A,这是翻译起始所必需的关键 RNA 解旋酶。这两个家族成员的结构见解表明,它们在结合过程中楔入 RNA 碱基之间。为了扩展我们对 rocaglates 的理解,我们研究了 silvestrol 的 RNA 结合特性,silvestrol 是一种天然的 rocaglate,其特征是存在独特的二氧杂环己烷环。我们的研究表明,由于这种结构特征,silvestrol 扩展了 rocaglates 的 RNA 结合谱,为针对 eIF4A 的合成分子钉的改进提供了依据。