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一种用于细胞内融合蛋白的动态小分子控制的双向系统。

A bidirectional system for the dynamic small molecule control of intracellular fusion proteins.

机构信息

Department of Molecular Cellular and Developmental Biology, Yale University, 219 Prospect Street, New Haven, CT 06511, USA.

Department of Biological Sciences, Northeast Structural Genomics Consortium, Columbia University, New York, NY 10027, USA.

出版信息

ACS Chem Biol. 2013 Oct 18;8(10):2293-2300. doi: 10.1021/cb400569k. Epub 2013 Aug 26.

Abstract

Small molecule control of intracellular protein levels allows temporal and dose-dependent regulation of protein function. Recently, we developed a method to degrade proteins fused to a mutant dehalogenase (HaloTag2) using small molecule hydrophobic tags (HyTs). Here, we introduce a complementary method to stabilize the same HaloTag2 fusion proteins, resulting in a unified system allowing bidirectional control of cellular protein levels in a temporal and dose-dependent manner. From a small molecule screen, we identified N-(3,5-dichloro-2-ethoxybenzyl)-2H-tetrazol-5-amine as a nanomolar HALoTag2 Stabilizer (HALTS1) that reduces the Hsp70:HaloTag2 interaction, thereby preventing HaloTag2 ubiquitination. Finally, we demonstrate the utility of the HyT/HALTS system in probing the physiological role of therapeutic targets by modulating HaloTag2-fused oncogenic H-Ras, which resulted in either the cessation (HyT) or acceleration (HALTS) of cellular transformation. In sum, we present a general platform to study protein function, whereby any protein of interest fused to HaloTag2 can be either degraded 10-fold or stabilized 5-fold using two corresponding compounds.

摘要

小分子控制细胞内蛋白质水平可实现对蛋白质功能的时间和剂量依赖性调节。最近,我们开发了一种使用小分子疏水性标签(HyTs)降解融合到突变脱卤酶(HaloTag2)的蛋白质的方法。在这里,我们引入了一种互补的方法来稳定相同的 HaloTag2 融合蛋白,从而建立了一个统一的系统,可实现细胞内蛋白质水平的时间和剂量依赖性双向控制。通过小分子筛选,我们确定 N-(3,5-二氯-2-乙氧基苄基)-2H-四唑-5-胺为纳摩尔 HALoTag2 稳定剂(HALTS1),可降低 Hsp70:HaloTag2 相互作用,从而防止 HaloTag2 泛素化。最后,我们通过调节融合 HaloTag2 的致癌性 H-Ras,展示了 HyT/HALTS 系统在探测治疗靶点的生理作用方面的实用性,这导致细胞转化的停止(HyT)或加速(HALTS)。总之,我们提出了一个研究蛋白质功能的通用平台,通过该平台,可以使用两种相应的化合物将任何感兴趣的融合到 HaloTag2 的蛋白质降解 10 倍或稳定 5 倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be36/4113957/8b06c9ef3af5/nihms-614198-f0001.jpg

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