Astbury Centre for Structural Molecular Biology, School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, UK.
Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Bearsden, Glasgow G61 1BD, UK.
Open Biol. 2024 Mar;14(3):230376. doi: 10.1098/rsob.230376. Epub 2024 Mar 20.
Fascin-1-mediated actin-bundling activity is central to the generation of plasma membrane protrusions required for cell migration. Dysregulated formation of cellular protrusions is observed in metastatic cancers, where they are required for increased invasiveness, and is often correlated with increased Fascin-1 abundance. Therefore, there is interest in generating therapeutic Fascin-1 inhibitors. We present the identification of Nb 3E11, a nanobody inhibitor of Fascin-1 actin-bundling activity and filopodia formation. The crystal structure of the Fascin-1/Nb 3E11 complex reveals the structural mechanism of inhibition. Nb 3E11 occludes an actin-binding site on the third β-trefoil domain of Fascin-1 that is currently not targeted by chemical inhibitors. Binding of Nb 3E11 to Fascin-1 induces a conformational change in the adjacent domains to stabilize Fascin-1 in an inhibitory state similar to that adopted in the presence of small-molecule inhibitors. Nb 3E11 could be used as a tool inhibitor molecule to aid in the development of Fascin-1 targeted therapeutics.
Fascin-1 介导的肌动蛋白成束活性是产生细胞迁移所需的质膜突起的核心。在转移性癌症中观察到细胞突起的失调形成,它们是增加侵袭性所必需的,并且通常与 Fascin-1 丰度的增加相关。因此,人们有兴趣生成治疗性 Fascin-1 抑制剂。我们介绍了 Nb 3E11 的鉴定,Nb 3E11 是 Fascin-1 肌动蛋白成束活性和丝状伪足形成的纳米体抑制剂。Fascin-1/Nb 3E11 复合物的晶体结构揭示了抑制的结构机制。Nb 3E11 占据 Fascin-1 第三 β-三叶结构域上的一个肌动蛋白结合位点,该位点目前不受化学抑制剂的靶向。Nb 3E11 与 Fascin-1 的结合诱导相邻结构域的构象变化,使 Fascin-1 稳定在类似于存在小分子抑制剂的抑制状态。Nb 3E11 可作为工具抑制剂分子,有助于开发 Fascin-1 靶向治疗药物。