利用新型RhoA- fret生物传感器小鼠,揭示RhoA信号作为体内药物靶点的新进展。

Q2 Biochemistry, Genetics and Molecular Biology
Max Nobis, David Herrmann, Sean C Warren, Douglas Strathdee, Thomas R Cox, Kurt I Anderson, Paul Timpson
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引用次数: 4

摘要

小GTPase RhoA是细胞-细胞外基质相互作用中信号传导的主要调节因子。RhoA信号传导对许多细胞过程至关重要,包括迁移、机械转导,并且在癌变过程中经常被破坏。使用传统的生化方法研究原生组织环境中的RhoA活性具有挑战性;因此,我们开发了RhoA-FRET生物传感器小鼠,利用活体成像对各种环境的适应性。机械转导是在骨细胞过程嵌入颅骨以定向方式响应压缩应力的背景下探索的。此外,在伤口反应的体内“趋化性”过程中,中性粒细胞的迁移被检查。RhoA活性在乳腺妊娠期组织重塑以及乳腺癌和胰腺癌发生过程中受到严格调控。最后,通过在体内使用完全发育的胰腺和乳腺肿瘤的光学成像窗口,暂时解决了RhoA的药物抑制。因此,RhoA- fret小鼠构成了一个强大的工具,以促进开发针对RhoA信号轴的新抑制剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shedding new light on RhoA signalling as a drug target in vivo using a novel RhoA-FRET biosensor mouse.

The small GTPase RhoA is a master regulator of signalling in cell-extracellular matrix interactions. RhoA signalling is critical to many cellular processes including migration, mechanotransduction, and is often disrupted in carcinogenesis. Investigating RhoA activity in a native tissue environment is challenging using conventional biochemical methods; we therefore developed a RhoA-FRET biosensor mouse, employing the adaptable nature of intravital imaging to a variety of settings. Mechanotransduction was explored in the context of osteocyte processes embedded in the calvaria responding in a directional manner to compression stress. Further, the migration of neutrophils was examined during in vivo "chemotaxis" in wound response. RhoA activity was tightly regulated during tissue remodelling in mammary gestation, as well as during mammary and pancreatic carcinogenesis. Finally, pharmacological inhibition of RhoA was temporally resolved by the use of optical imaging windows in fully developed pancreatic and mammary tumours in vivo. The RhoA-FRET mouse therefore constitutes a powerful tool to facilitate development of new inhibitors targeting the RhoA signalling axis.

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来源期刊
Small GTPases
Small GTPases Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
6.10
自引率
0.00%
发文量
6
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