Department of Chromosome Science, National Institute of Genetics, Research Organization of Information and Systems (ROIS), Yata 1111, Mishima, Shizuoka, 411-8540, Japan.
Graduate Institute for Advanced Studies, SOKENDAI, Yata 1111, Mishima, Shizuoka, 411-8540, Japan.
EMBO Rep. 2024 Sep;25(9):4062-4077. doi: 10.1038/s44319-024-00224-4. Epub 2024 Aug 23.
Acute protein knockdown is a powerful approach to dissecting protein function in dynamic cellular processes. We previously reported an improved auxin-inducible degron system, AID2, but recently noted that its ability to induce degradation of some essential replication factors, such as ORC1 and CDC6, was not enough to induce lethality. Here, we present combinational degron technologies to control two proteins or enhance target depletion. For this purpose, we initially compare PROTAC-based degrons, dTAG and BromoTag, with AID2 to reveal their key features and then demonstrate control of cohesin and condensin with AID2 and BromoTag, respectively. We develop a double-degron system with AID2 and BromoTag to enhance target depletion and accelerate depletion kinetics and demonstrate that both ORC1 and CDC6 are pivotal for MCM loading. Finally, we show that co-depletion of ORC1 and CDC6 by the double-degron system completely suppresses DNA replication, and the cells enter mitosis with single-chromatid chromosomes, indicating that DNA replication is uncoupled from cell cycle control. Our combinational degron technologies will expand the application scope for functional analyses.
急性蛋白敲低是一种在动态细胞过程中解析蛋白质功能的有效方法。我们之前报道了一种改良的生长素诱导降解结构域(AID)系统 AID2,但最近注意到,它诱导降解一些必需复制因子(如 ORC1 和 CDC6)的能力不足以诱导致死。在这里,我们提出了组合降解结构域技术来控制两种蛋白质或增强靶蛋白的消耗。为此,我们首先比较了基于 PROTAC 的降解结构域 dTAG 和 BromoTag 与 AID2,以揭示它们的关键特征,然后分别用 AID2 和 BromoTag 证明了对黏连蛋白和凝聚蛋白的控制。我们开发了一种带有 AID2 和 BromoTag 的双降解结构域系统来增强靶蛋白的消耗并加速消耗动力学,并证明 ORC1 和 CDC6 对于 MCM 加载都是至关重要的。最后,我们表明双降解结构域系统共耗竭 ORC1 和 CDC6 可完全抑制 DNA 复制,并且细胞进入有单条染色体的有丝分裂,表明 DNA 复制与细胞周期控制解耦。我们的组合降解结构域技术将扩展功能分析的应用范围。