Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute of Pharmaceutical Sciences, Utrecht University, Utrecht, the Netherlands.
Hubrecht Institute, KNAW and University Medical Center Utrecht, Utrecht, the Netherlands; Institute Biology Leiden, Leiden University, Leiden, the Netherlands.
Mol Cell Proteomics. 2021;20:100033. doi: 10.1074/mcp.RA120.002273. Epub 2021 Feb 13.
Thermal proteome profiling (TPP) allows for the unbiased detection of drug-target protein engagements in vivo. Traditionally, 1 cell type is used for TPP studies, with the risk of missing important differentially expressed target proteins. The use of whole organisms would circumvent this problem. Zebrafish embryos are amenable to such an approach. Here, we used TPP on whole zebrafish embryo lysate to identify protein targets of napabucasin, a compound that may affect signal transducer and activator of transcription 3 (Stat3) signaling through an ill-understood mechanism. In zebrafish embryos, napabucasin induced developmental defects consistent with inhibition of Stat3 signaling. TPP profiling showed no distinct shift in Stat3 upon napabucasin treatment, but effects were detected on the oxidoreductase, Pora, which might explain effects on Stat3 signaling. Interestingly, thermal stability of several aldehyde dehydrogenases was affected. Moreover, napabucasin activated aldehyde dehydrogenase enzymatic activity in vitro. Aldehyde dehydrogenases have crucial roles in retinoic acid metabolism, and functionally, we validated napabucasin-mediated activation of the retinoic acid pathway in zebrafish in vivo. We conclude that TPP profiling in whole zebrafish embryo lysate is feasible and facilitates direct correlation of in vivo effects of small molecule drugs with their protein targets.
热蛋白质组谱分析(TPP)可用于在体内非偏性地检测药物靶蛋白的结合。传统上,TPP 研究仅使用 1 种细胞类型,这存在错过重要差异表达靶蛋白的风险。使用整个生物体可以避免这个问题。斑马鱼胚胎适合采用这种方法。在这里,我们使用整个斑马鱼胚胎裂解物进行 TPP 分析,以鉴定 napabucasin 的蛋白靶标,napabucasin 可能通过一种尚未充分了解的机制影响信号转导和转录激活因子 3(Stat3)信号。在斑马鱼胚胎中,napabucasin 诱导的发育缺陷与 Stat3 信号抑制一致。TPP 分析显示 napabucasin 处理后 Stat3 没有明显变化,但在氧化还原酶 Pora 上检测到了影响,这可能解释了对 Stat3 信号的影响。有趣的是,几种醛脱氢酶的热稳定性受到影响。此外,napabucasin 在体外激活醛脱氢酶的酶活性。醛脱氢酶在视黄酸代谢中具有关键作用,并且在功能上,我们验证了 napabucasin 在体内介导的斑马鱼视黄酸途径的激活。我们得出结论,使用整个斑马鱼胚胎裂解物进行 TPP 分析是可行的,并且可以促进小分子药物在体内的作用与其蛋白靶标之间的直接相关性。