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Rapid and Reversible Knockdown of Endogenously Tagged Endosomal Proteins via an Optimized HaloPROTAC Degrader

机译:通过优化的卤浦降解剂快速和可逆地敲尾内源性标记的内体蛋白

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摘要

Inducing post-translational protein knockdown is an important approach to probe biology and validate drug targets. An efficient strategy to achieve this involves expression of a protein of interest fused to an exogenous tag, allowing tag directed chemical degraders to mediate protein ubiquitylation and proteasomal degradation. Here, we combine improved HaloPROTAC degrader probes with CRISPR/Cas9 genome editing technology to trigger rapid degradation of endogenous target proteins. Our optimized probe, HaloPROTAC-E, a chloroalkane conjugate of high-affinity VHL binder VH298, induced reversible degradation of two endosomally localized proteins, SGK3 and VPS34, with a DC50 of 3-10 nM. HaloPROTAC-E induced rapid (similar to 50% degradation after 30 min) and complete (D-max of similar to 95% at 48 h) depletion of Halo tagged SGK3, blocking downstream phosphorylation of the SGK3 substrate NDRG1. HaloPROTAC-E more potently induced greater steady state degradation of Halo tagged endogenous VPS34 than the previously reported HaloPROTAC3 compound. Quantitative global proteomics revealed that HaloPROTAC-E is remarkably selective inducing only degradation of the Halo tagged endogenous VPS34 complex (VPS34, VPS15, Beclin1, and ATG14) and no other proteins were significantly degraded. This study exemplifies the combination of HaloPROTACs with CRISPR/Cas9 endogenous protein tagging as a useful method to induce rapid and reversible degradation of endogenous proteins to interrogate their function.
机译:诱导翻译后蛋白质敲低是探针生物学和验证药物目标的重要方法。实现这一点的一种有效策略涉及将融合到外源标签融合的感兴趣蛋白质的表达,允许标签指导的化学降解介导蛋白质膨胀和蛋白酶体降解。在这里,我们将改进的卤水剂降解剂探针与CRISPR / CAS9基因组编辑技术结合起来引发内源性靶蛋白的快速降解。我们优化的探针,卤水-e,高亲和力VHL粘合剂VH298的氯基烷烃缀合物,诱导两个内骨局部化蛋白,SGK3和VPS34的可逆降解,DC50为3-10nm。卤水-e诱导快速(类似于30分钟后的50%的降解),完全(D-MAX与48小时的95%相似)卤素标记的SGK3,阻断SGK3衬底NDRG1的下游磷酸化。卤水 - e比以前报道的卤水3化合物更易于诱导卤素标记的内源VPS34的更大稳态劣化。定量全球蛋白质组学显示,卤浦菌-E非常选择诱导晕晕标记的内源VPS34复合物(VPS34,VPS15,BECLIN1和ATG14)的降解,并且没有其他蛋白质显着降解。该研究举例说明了卤浦/ Cas9内源蛋白标记作为诱导内源性蛋白质快速和可逆降解的有用方法来询问其功能的有用方法。

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  • 来源
    《ACS Chemical Biology》 |2019年第5期|共11页
  • 作者单位

    Univ Dundee Sch Life Sci MRC Prot Phosphorylat &

    Ubiquitylat Unit Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci Div Biol Chem &

    Drug Discovery Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci Div Biol Chem &

    Drug Discovery Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci MRC Prot Phosphorylat &

    Ubiquitylat Unit Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci Dundee Imaging Facil Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci MRC Prot Phosphorylat &

    Ubiquitylat Unit Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci Div Biol Chem &

    Drug Discovery Dow St Dundee DD1 5EH Scotland;

    Univ Dundee Sch Life Sci MRC Prot Phosphorylat &

    Ubiquitylat Unit Dow St Dundee DD1 5EH Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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