Bottone Sara, Joliot Octave, Cakil Zeyneb Vildan, El Hajji Lina, Rakotoarison Louise-Marie, Boncompain Gaelle, Perez Franck, Gautier Arnaud
Sorbonne Université, École Normale Supérieure, Université PSL, CNRS, Laboratoire des Biomolécules, Paris, France.
Institut Curie, Université PSL, Paris, France.
Nat Methods. 2023 Oct;20(10):1553-1562. doi: 10.1038/s41592-023-01988-8. Epub 2023 Aug 28.
Molecular tools enabling the control and observation of the proximity of proteins are essential for studying the functional role of physical distance between two proteins. Here we present CATCHFIRE (chemically assisted tethering of chimera by fluorogenic-induced recognition), a chemically induced proximity technology with intrinsic fluorescence imaging and sensing capabilities. CATCHFIRE relies on genetic fusion to small dimerizing domains that interact upon addition of fluorogenic inducers of proximity that fluoresce upon formation of the ternary assembly, allowing real-time monitoring of the chemically induced proximity. CATCHFIRE is rapid and fully reversible and allows the control and tracking of protein localization, protein trafficking, organelle transport and cellular processes, opening new avenues for studying or controlling biological processes with high spatiotemporal resolution. Its fluorogenic nature allows the design of a new class of biosensors for the study of processes such as signal transduction and apoptosis.
能够控制和观察蛋白质接近程度的分子工具对于研究两种蛋白质之间物理距离的功能作用至关重要。在此,我们展示了CATCHFIRE(荧光诱导识别介导的嵌合体化学辅助拴系),这是一种具有内在荧光成像和传感能力的化学诱导接近技术。CATCHFIRE依赖于与小的二聚化结构域的基因融合,这些结构域在添加荧光诱导剂后相互作用,该诱导剂在三元组装形成时会发出荧光,从而能够实时监测化学诱导的接近程度。CATCHFIRE快速且完全可逆,能够控制和追踪蛋白质定位、蛋白质运输、细胞器运输及细胞过程,为以高时空分辨率研究或控制生物过程开辟了新途径。其荧光特性使得能够设计一类新型生物传感器,用于研究诸如信号转导和细胞凋亡等过程。