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首页> 外文期刊>Nature chemical biology >Small-molecule displacement of a cryptic degron causes conditional protein degradation
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Small-molecule displacement of a cryptic degron causes conditional protein degradation

机译:隐性德格隆分子的小分子位移导致条件蛋白降解

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摘要

The ability to rapidly regulate the functions of specific proteins in living cells is a valuable tool for biological research. Here we describe a new technique by which the degradation of a specific protein is induced by a small molecule. A protein of interest is fused to a ligand-induced degradation (LID) domain, resulting in the expression of a stable and functional fusion protein. The LID domain is comprised of the FK506- and rapamycin-binding protein (FKBP) and a 19-amino-acid degron fused to the C terminus of FKBP. In the absence of the small molecule Shield-1, the degron is bound to the FKBP fusion protein and the protein is stable. When present, Shield-1 binds tightly to FKBP, displacing the degron and inducing rapid and processive degradation of the LID domain and any fused partner protein. Structure-function studies of the 19-residue peptide showed that a 4-amino-acid sequence within the peptide is responsible for degradation.
机译:快速调节活细胞中特定蛋白质功能的能力是生物学研究的宝贵工具。在这里,我们描述了一种新技术,通过该技术,小分子可诱导特定蛋白质的降解。感兴趣的蛋白质与配体诱导的降解(LID)结构域融合,导致稳定和功能性融合蛋白的表达。 LID结构域由FK506-雷帕霉素结合蛋白(FKBP)和与FKBP C端融合的19个氨基酸的地龙组成。在没有小分子Shield-1的情况下,degron与FKBP融合蛋白结合,并且该蛋白稳定。当存在时,Shield-1与FKBP紧密结合,取代德格隆并诱导LID结构域和任何融合伴侣蛋白的快速降解。对19个残基的肽的结构功能研究表明,该肽内的4个氨基酸序列负责降解。

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