Erhart Dominik, Zimmermann Mirjam, Jacques Olivier, Wittwer Matthias B, Ernst Beat, Constable Edwin, Zvelebil Marketa, Beaufils Florent, Wymann Matthias P
Department of Biomedicine, University of Basel, 4003 Basel, Switzerland.
Chem Biol. 2013 Apr 18;20(4):549-57. doi: 10.1016/j.chembiol.2013.03.010.
Cell activation initiated by receptor ligands or oncogenes triggers complex and convoluted intracellular signaling. Techniques initiating signals at defined starting points and cellular locations are attractive to elucidate the output of selected pathways. Here, we present the development and validation of a protein heterodimerization system based on small molecules cross-linking fusion proteins derived from HaloTags and SNAP-tags. Chemical dimerizers of HaloTag and SNAP-tag (HaXS) show excellent selectivity and have been optimized for intracellular reactivity. HaXS force protein-protein interactions and can translocate proteins to various cellular compartments. Due to the covalent nature of the HaloTag-HaXS-SNAP-tag complex, intracellular dimerization can be easily monitored. First applications include protein targeting to cytoskeleton, to the plasma membrane, to lysosomes, the initiation of the PI3K/mTOR pathway, and multiplexed protein complex formation in combination with the rapamycin dimerization system.
由受体配体或癌基因引发的细胞活化会触发复杂且盘绕的细胞内信号传导。在特定起始点和细胞位置启动信号的技术对于阐明所选信号通路的输出很有吸引力。在此,我们展示了一种基于小分子交联源自卤代标签(HaloTag)和SNAP标签的融合蛋白的蛋白质异源二聚化系统的开发与验证。卤代标签和SNAP标签的化学二聚体(HaXS)表现出出色的选择性,并已针对细胞内反应性进行了优化。HaXS促使蛋白质-蛋白质相互作用,并可将蛋白质转运至各种细胞区室。由于卤代标签-HaXS-SNAP标签复合物的共价性质,细胞内二聚化易于监测。首批应用包括将蛋白质靶向细胞骨架、质膜、溶酶体,启动PI3K/mTOR信号通路,以及与雷帕霉素二聚化系统结合形成多重蛋白质复合物。