Charles University, Faculty of Science - BIOCEV, Department of Cell Biology, Vestec 252 50, Czech Republic.
Cancer Research UK, Beatson Institute, Glasgow G611BD, UK.
Cell Chem Biol. 2019 Feb 21;26(2):255-268.e4. doi: 10.1016/j.chembiol.2018.10.024. Epub 2018 Dec 13.
Src kinase plays an important role in a multitude of fundamental cellular processes and is often found deregulated in tumors. Active Src adopts an open conformation, whereas inactive Src is characterized by a very compact structure stabilized by inhibitory intramolecular interactions. Taking advantage of this spatial regulation, we constructed a fluorescence resonance energy transfer (FRET)-based Src biosensor and analyzed conformational changes of Src following Src activation and the spatiotemporal dynamics of Src activity in cells. We found that activatory mutations either in regulatory or kinase domains induce opening of the Src structure. Surprisingly, we discovered that Src inhibitors differ in their effect on the Src structure, some counterintuitively inducing an open conformation. Finally, we analyzed the dynamics of Src activity in focal adhesions by FRET imaging and found that Src is rapidly activated during focal adhesion assembly, and its activity remains steady and high throughout the life cycle of focal adhesion and decreases during focal adhesion disassembly.
Src 激酶在多种基本细胞过程中发挥重要作用,并且经常在肿瘤中发现其失调。活性 Src 采用开放构象,而无活性 Src 的特征是非常紧凑的结构,由抑制性的分子内相互作用稳定。利用这种空间调节,我们构建了一种基于荧光共振能量转移 (FRET) 的Src 生物传感器,并分析了 Src 在 Src 激活后的构象变化以及细胞中 Src 活性的时空动力学。我们发现,无论是在调节域还是激酶域中的激活突变,都会导致 Src 结构的开放。令人惊讶的是,我们发现 Src 抑制剂对 Src 结构的影响不同,有些出乎意料地诱导出开放构象。最后,我们通过 FRET 成像分析了焦点黏附处的 Src 活性动力学,发现 Src 在焦点黏附组装过程中迅速被激活,并且其活性在焦点黏附的整个生命周期中保持稳定和高,并在焦点黏附解体过程中降低。