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使用抑制性纳米抗体和靶向细胞内定位缺失技术对侵袭伪足形成中的 fascin 和 cortactin 功能进行分层研究。

Stratifying fascin and cortactin function in invadopodium formation using inhibitory nanobodies and targeted subcellular delocalization.

机构信息

1Department of Biochemistry, Faculty of Medicine and Health Sciences, Ghent University, Albert Baertsoenkaai 3, B-9000 Ghent, Belgium.

出版信息

FASEB J. 2014 Apr;28(4):1805-18. doi: 10.1096/fj.13-242537. Epub 2014 Jan 10.

Abstract

Invadopodia are actin-rich protrusions arising through the orchestrated regulation of precursor assembly, stabilization, and maturation, endowing cancer cells with invasive properties. Using nanobodies (antigen-binding domains of Camelid heavy-chain antibodies) as perturbators of intracellular functions and/or protein domains at the level of the endogenous protein, we examined the specific contribution of fascin and cortactin during invadopodium formation in MDA-MB-231 breast and PC-3 prostate cancer cells. A nanobody (K(d)35 nM, 1:1 stoichiometry) that disrupts fascin F-actin bundling emphasizes the importance of stable actin bundles in invadopodium array organization and turnover, matrix degradation, and cancer cell invasion. Cortactin-SH3 dependent WIP recruitment toward the plasma membrane was specifically inhibited by a cortactin nanobody (K(d)75 nM, 1:1 stoichiometry). This functional domain is shown to be important for formation of properly organized invadopodia, MMP-9 secretion, matrix degradation, and cancer cell invasion. Notably, using a subcellular delocalization strategy to trigger protein loss of function, we uncovered a fascin-bundling-independent role in MMP-9 secretion. Hence, we demonstrate that nanobodies enable high resolution protein function mapping in cells.

摘要

侵袭伪足是通过前体组装、稳定和成熟的协调调节而产生的富含肌动蛋白的突起,赋予癌细胞侵袭性。我们使用纳米体(骆驼重链抗体的抗原结合结构域)作为细胞内功能和/或蛋白质结构域的扰动剂,在 MDA-MB-231 乳腺癌和 PC-3 前列腺癌细胞中的侵袭伪足形成过程中,研究了 fascin 和 cortactin 的特定作用。一种能够破坏 fascin-F-肌动蛋白成束的纳米体(K(d)35 nM,1:1 摩尔比)强调了稳定的肌动蛋白束在侵袭伪足排列组织和周转、基质降解和癌细胞侵袭中的重要性。Cortactin-SH3 依赖性 WIP 向质膜的募集被 cortactin 纳米体(K(d)75 nM,1:1 摩尔比)特异性抑制。该功能结构域对于正确组织侵袭伪足的形成、MMP-9 的分泌、基质降解和癌细胞侵袭至关重要。值得注意的是,我们使用亚细胞定位策略来触发蛋白功能丧失,发现了 MMP-9 分泌中的 fascin 成束作用之外的作用。因此,我们证明了纳米体能够在细胞中实现高分辨率的蛋白质功能映射。

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