AMGEN Research, One Amgen Center Drive, Thousand Oaks, CA 91320, USA.
AMGEN Research, One Amgen Center Drive, Thousand Oaks, CA 91320, USA.
Mol Cell. 2020 Feb 6;77(3):446-460. doi: 10.1016/j.molcel.2020.01.010. Epub 2020 Jan 30.
Two decades into the twenty-first century, a confluence of breakthrough technologies wielded at the molecular level is presenting biologists with unique opportunities to unravel the complexities of the cellular world. CRISPR/Cas9 allows gene knock-outs, knock-ins, and single-base editing at chromosomal loci. RNA-based tools such as siRNA, antisense oligos, and morpholinos can be used to silence expression of specific genes. Meanwhile, protein knockdown tools that draw inspiration from natural regulatory mechanisms and facilitate elimination of native or degron-tagged proteins from cells are rapidly emerging. The acute and reversible reduction in protein levels enabled by these methods allows for precise determination of loss-of-function phenotypes free from secondary effects or compensatory adaptation that can confound nucleic-acid-based methods that involve slow depletion or permanent loss of a protein. In this Review, we summarize the ingenious ways biologists have exploited natural mechanisms for protein degradation to direct the elimination of specific proteins at will. This has led to advancements not only in basic research but also in the therapeutic space with the introduction of PROTACs into clinical trials for cancer patients.
进入 21 世纪的第二个十年,分子水平上的一系列突破性技术汇聚在一起,为生物学家提供了独特的机会来解开细胞世界的复杂性。CRISPR/Cas9 允许在染色体基因座上进行基因敲除、敲入和单碱基编辑。基于 RNA 的工具,如 siRNA、反义寡核苷酸和 morpholino,可以用来沉默特定基因的表达。同时,从自然调控机制中汲取灵感的蛋白质敲低工具,以及促进从细胞中去除天然或 degron 标记蛋白的工具,正在迅速涌现。这些方法实现的蛋白质水平的急性和可逆降低,使得能够精确确定功能丧失表型,而不会受到核酸方法中涉及的蛋白质缓慢耗竭或永久性丧失所带来的次级效应或补偿性适应的影响。在这篇综述中,我们总结了生物学家巧妙地利用天然的蛋白质降解机制来随意引导特定蛋白质的消除的方法。这不仅在基础研究方面取得了进展,而且在治疗领域也取得了进展,PROTAC 已被引入癌症患者的临床试验。