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Tunable Heteroaromatic Sulfones Enhance in-Cell Cysteine Profiling

机译:可调谐杂芳族砜增强细胞内半胱氨酸分析

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摘要

Heteroaromatic sulfones react with cysteine via nucleophilic aromatic substitution, providing a mechanistically selective and irreversible scaffold for cysteine conjugation. Here we evaluate a library of heteroaromatic sulfides with different oxidation states, heteroatom substitutions, and a series of electron-donating and electron-withdrawing substituents. Select substitutions profoundly influence reactivity and stability compared to conventional cysteine conjugation reagents, increasing the reaction rate by >3 orders of magnitude. The findings establish a series of synthetically accessible electrophilic scaffolds tunable across multiple centers. New electro-philes and their corresponding alkyne conjugates were profiled direcdy in cultured cells, achieving thiol saturation in a few minutes at submillimolar concentrations. Direct addition of desthiobiotin-functionalized probes to cultured cells simplified enrichment and elution to enable the mass spectrometry discovery of >3000 reactive and/or accessible thiols labeled in their native cellular environments in a fraction of the standard analysis time. Surprisingly, only half of the annotated cysteines were identified by both iodoacetamide-desthiobiotin and methylsulfonylbenzothiazole-desthiobiotin in replicate experiments, demonstrating complementary detection by mass spectrometry analysis. These probes offer advantages over existing cysteine alkylation reagents, including accelerated reaction rates, improved stability, and robust ionization for mass spectrometry applications. Overall, heteroaromatic sulfones provide modular tunability, shifted chromatographic elution times, and superior in-cell cysteine profiling for in-depth proteome-wide analysis and covalent ligand discovery.
机译:杂芳族砜通过亲核芳族取代与半胱氨酸反应,为半胱氨酸缀合提供了机械选择性和不可逆的支架。在这里,我们评估了具有不同氧化态,杂原子取代以及一系列给电子和吸电子取代基的杂芳族硫化物库。与常规的半胱氨酸缀合试剂相比,选择的替代物对反应性和稳定性产生了深远的影响,使反应速率提高了> 3个数量级。这些发现建立了一系列可在多个中心进行调节的可合成合成的亲电子支架。新的亲电子试剂及其对应的炔烃缀合物在培养的细胞中被直接分析,在亚毫摩尔浓度下在几分钟内达到硫醇饱和。将脱硫生物素功能化的探针直接添加到培养的细胞中可简化富集和洗脱过程,从而能够在标准分析时间内的一小部分时间内在其天然细胞环境中质谱发现> 3000种反应性和/或可及的巯基。令人惊讶的是,在重复实验中,碘乙酰胺-脱硫生物素和甲基磺酰基苯并噻唑-脱硫生物素都只鉴定出一半的半胱氨酸。这表明通过质谱分析可以进行互补检测。与现有的半胱氨酸烷基化试剂相比,这些探针具有优势,包括加快了反应速度,提高了稳定性,并为质谱应用提供了强大的电离能力。总体而言,杂芳族砜提供了模块化的可调性,改变了色谱洗脱时间,并具有出色的细胞内半胱氨酸谱,可进行深入的蛋白质组分析和共价配体发现。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第4期|1801-1810|共10页
  • 作者单位

    University of Michigan Ann Arbor Michigan;

    University of Michigan Ann Arbor Michigan and University of Michigan Medical School Ann Arbor Michigan;

    University of Michigan Ann Arbor Michigan and University of Michigan Ann Arbor;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 05:17:03

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