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抑制性皮质肌动蛋白纳米抗体揭示了NTA结构域和SH3结构域特异性功能在侵袭伪足形成和癌细胞侵袭过程中的作用。

Inhibitory cortactin nanobodies delineate the role of NTA- and SH3-domain-specific functions during invadopodium formation and cancer cell invasion.

作者信息

Bertier Laurence, Boucherie Ciska, Zwaenepoel Olivier, Vanloo Berlinda, Van Troys Marleen, Van Audenhove Isabel, Gettemans Jan

机构信息

Department of Biochemistry, Faculty of Medicine and Health Sciences, Ghent University-Campus Rommelaere, Ghent, Belgium.

Department of Biochemistry, Faculty of Medicine and Health Sciences, Ghent University-Campus Rommelaere, Ghent, Belgium

出版信息

FASEB J. 2017 Jun;31(6):2460-2476. doi: 10.1096/fj.201600810RR. Epub 2017 Feb 24.

Abstract

Cancer cells exploit different strategies to escape from the primary tumor, gain access to the circulation, disseminate throughout the body, and form metastases, the leading cause of death by cancer. Invadopodia, proteolytically active plasma membrane extensions, are essential in this escape mechanism. Cortactin is involved in every phase of invadopodia formation, and its overexpression is associated with increased invadopodia formation, extracellular matrix degradation, and cancer cell invasion. To analyze endogenous cortactin domain function in these processes, we characterized the effects of nanobodies that are specific for the N-terminal acidic domain of cortactin and expected to target small epitopes within this domain. These nanobodies inhibit cortactin-mediated actin-related protein (Arp)2/3 activation, and, after their intracellular expression in cancer cells, decrease invadopodia formation, extracellular matrix degradation, and cancer cell invasion. In addition, one of the nanobodies affects Arp2/3 interaction and invadopodium stability, and a nanobody targeting the Src homology 3 domain of cortactin enabled comparison of 2 functional regions in invadopodium formation or stability. Given their common and distinct effects, we validate cortactin nanobodies as an instrument to selectively block and study distinct domains within a protein with unprecedented precision, aiding rational future generation of protein domain-selective therapeutic compounds.-Bertier, L., Boucherie, C., Zwaenepoel, O., Vanloo, B., Van Troys, M., Van Audenhove, I., Gettemans, J. Inhibitory cortactin nanobodies delineate the role of NTA- and SH3-domain-specific functions during invadopodium formation and cancer cell invasion.

摘要

癌细胞利用不同策略逃离原发性肿瘤,进入循环系统,扩散至全身并形成转移灶,而转移是癌症致死的主要原因。侵袭伪足是具有蛋白水解活性的质膜延伸结构,在这种逃逸机制中至关重要。皮层肌动蛋白参与侵袭伪足形成的各个阶段,其过表达与侵袭伪足形成增加、细胞外基质降解及癌细胞侵袭相关。为分析内源性皮层肌动蛋白结构域在这些过程中的功能,我们对特异性针对皮层肌动蛋白N端酸性结构域且预期靶向该结构域内小表位的纳米抗体的作用进行了表征。这些纳米抗体抑制皮层肌动蛋白介导的肌动蛋白相关蛋白(Arp)2/3激活,在癌细胞内表达后,可减少侵袭伪足形成、细胞外基质降解及癌细胞侵袭。此外,其中一种纳米抗体影响Arp2/3相互作用及侵袭伪足稳定性,靶向皮层肌动蛋白Src同源3结构域的纳米抗体可用于比较侵袭伪足形成或稳定性中的两个功能区域。鉴于它们的共同和独特作用,我们验证了皮层肌动蛋白纳米抗体是一种能够以前所未有的精度选择性阻断和研究蛋白质内不同结构域的工具,有助于未来合理设计蛋白质结构域选择性治疗化合物。-贝蒂尔,L.,布谢里,C.,兹瓦内波尔,O.,范洛,B.,范特罗伊斯,M.,范奥登霍夫,I.,格特曼斯,J. 抑制性皮层肌动蛋白纳米抗体描绘了NTA结构域和SH3结构域特异性功能在侵袭伪足形成和癌细胞侵袭过程中的作用

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