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首页> 外文期刊>ACS Chemical Biology >Improved Deconvolution of Protein Targets for Bioactive Compounds Using a Palladium Cleavable Chloroalkane Capture Tag
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Improved Deconvolution of Protein Targets for Bioactive Compounds Using a Palladium Cleavable Chloroalkane Capture Tag

机译:使用钯可裂解的氯代烷烃捕获标签,改善了生物活性化合物蛋白质靶标的去卷积

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摘要

The benefits provided by phenotypic screening of compound libraries are often countered by difficulties in identifying the underlying cellular targets. We recently described a new approach utilizing a chloroalkane capture tag, which can be chemically attached to bioactive compounds to facilitate the isolation of their respective targets for subsequent identification by mass spectrometry. The tag minimally affects compound potency and membrane permeability, enabling target engagement inside cells. Effective enrichment of these targets is achieved through selectivity in both their rapid capture onto immobilized HaloTag and their subsequent release by competitive elution. Here, we describe a significant improvement to this method where selective elution was achieved through palladium-catalyzed cleavage of an allyl-carbamate linkage incorporated into the chloroalkane capture tag. Selective tag cleavage provided robust release of captured targets exhibiting different modes of binding to the bioactive compound, including prolonged residence time and covalent interactions. Using the kinase inhibitors ibrutinib and BIRB796 as model compounds, we demonstrated the capability of this new method to identify both expected targets and "off-targets" exhibiting a range of binding affinities, cellular abundances, and binding characteristics.
机译:化合物库的表型筛选所提供的好处通常会因难以识别潜在的细胞靶标而被抵消。我们最近描述了一种利用氯烷烃捕获标签的新方法,该标签可以化学连接到生物活性化合物上,以帮助分离其各自的靶标,以便随后通过质谱鉴定。该标签对化合物的效力和膜通透性的影响最小,从而使靶标在细胞内参与。通过选择性地将它们快速捕获到固定的HaloTag上以及随后通过竞争性洗脱将其释放,可以实现这些目标的有效富集。在这里,我们描述了此方法的重大改进,其中通过钯催化并入氯代烷烃捕获标签的烯丙基-氨基甲酸酯键的裂解实现了选择性洗脱。选择性标签切割提供了捕获的靶标的稳定释放,显示出与生物活性化合物的不同结合模式,包括延长的停留时间和共价相互作用。使用激酶抑制剂依鲁替尼和BIRB796作为模型化合物,我们证明了这种新方法能够鉴定预期靶标和“脱靶标”的能力,这些靶标具有一系列结合亲和力,细胞丰度和结合特性。

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