National Institute of Biological Sciences, Beijing 102206, China.
School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, Jiangsu 210094, China.
G3 (Bethesda). 2022 Jan 4;12(1). doi: 10.1093/g3journal/jkab393.
Conditional degron technologies, which allow a protein of interest to be degraded in an inducible manner, are important tools for biological research, and are especially useful for creating conditional loss-of-function mutants of essential genes. The auxin-inducible degron (AID) technology, which utilizes plant auxin signaling components to control protein degradation in nonplant species, is a widely used small-molecular-controlled degradation method in yeasts and animals. However, the currently available AID systems still have room for further optimization. Here, we have improved the AID system for the fission yeast Schizosaccharomyces pombe by optimizing all three components: the AID degron, the small-molecule inducer, and the inducer-responsive F-box protein. We chose a 36-amino-acid sequence of the Arabidopsis IAA17 protein as the degron and employed three tandem copies of it to enhance efficiency. To minimize undesirable side effects of the inducer, we adopted a bulky analog of auxin, 5-adamantyl-IAA, and paired it with the F-box protein OsTIR1 that harbors a mutation (F74A) at the auxin-binding pocket. 5-adamantyl-IAA, when utilized with OsTIR1-F74A, is effective at concentrations thousands of times lower than auxin used in combination with wild-type OsTIR1. We tested our improved AID system on 10 essential genes and achieved inducible lethality for all of them, including ones that could not be effectively inactivated using a previously published AID system. Our improved AID system should facilitate the construction of conditional loss-of-function mutants in fission yeast.
条件性降解标签技术可以使感兴趣的蛋白质以诱导的方式降解,是生物研究的重要工具,对于创建必需基因的条件性功能丧失突变体尤其有用。植物生长素诱导的降解标签(AID)技术利用植物生长素信号成分来控制非植物物种中的蛋白质降解,是酵母和动物中广泛使用的小分子控制降解方法。然而,目前可用的 AID 系统仍有进一步优化的空间。在这里,我们通过优化所有三个组件:AID 降解标签、小分子诱导剂和诱导剂响应的 F-box 蛋白,改进了裂殖酵母 Schizosaccharomyces pombe 的 AID 系统。我们选择了拟南芥 IAA17 蛋白的 36 个氨基酸序列作为降解标签,并采用三个串联拷贝来提高效率。为了最小化诱导剂的不良副作用,我们采用了生长素的大体积类似物 5-金刚烷基-IAA,并将其与具有生长素结合口袋突变(F74A)的 F-box 蛋白 OsTIR1 配对。当与 OsTIR1-F74A 一起使用时,5-金刚烷基-IAA 在浓度比与野生型 OsTIR1 结合使用的生长素低数千倍时就有效。我们在 10 个必需基因上测试了我们改进的 AID 系统,所有基因都实现了诱导致死,包括使用以前发表的 AID 系统无法有效失活的基因。我们改进的 AID 系统应该有助于在裂殖酵母中构建条件性功能丧失突变体。