Division of Molecular Cell Engineering, National Institute of Genetics, Research Organization of Information and Systems (ROIS), and Department of Genetics, The Graduate University for Advanced Studies (SOKENDAI), Mishima, Shizuoka 411-8540, Japan; email:
Annu Rev Genet. 2017 Nov 27;51:83-102. doi: 10.1146/annurev-genet-120116-024656.
The conditional depletion of a protein of interest (POI) is useful not only for loss-of-function studies, but also for the modulation of biological pathways. Technologies that work at the level of DNA, mRNA, and protein are available for temporal protein depletion. Compared with technologies targeting the pretranslation steps, direct protein depletion (or protein knockdown approaches) is advantageous in terms of specificity, reversibility, and time required for depletion, which can be achieved by fusing a POI with a protein domain called a degron that induces rapid proteolysis of the fusion protein. Conditional degrons can be activated or inhibited by temperature, small molecules, light, or the expression of another protein. The conditional degron-based technologies currently available are described and discussed.
条件性耗尽目的蛋白(POI)不仅可用于功能丧失研究,还可用于调节生物途径。可用于时间性蛋白耗尽的技术有作用于 DNA、mRNA 和蛋白质水平的技术。与针对翻译前步骤的技术相比,直接蛋白耗尽(或蛋白敲低方法)在特异性、可逆性和所需的耗尽时间方面具有优势,这可以通过将 POI 与称为 degron 的蛋白结构域融合来实现,该结构域诱导融合蛋白的快速蛋白水解。条件性 degron 可通过温度、小分子、光或另一种蛋白的表达来激活或抑制。目前可用的基于条件性 degron 的技术进行了描述和讨论。