Department of Chemistry, Washington University, St. Louis, MO 63130, USA.
Bioorg Med Chem. 2011 Aug 15;19(16):4710-20. doi: 10.1016/j.bmc.2011.07.005. Epub 2011 Jul 13.
Quercetin is a flavonoid natural product, that is, found in many foods and has been found to have a wide range of medicinal effects. Though a number of quercetin binding proteins have been identified, there has been no systematic approach to identifying all potential targets of quercetin. We describe an O7-biotinylated derivative of quercetin (BioQ) that can act as a photoaffinity proteomics reagent for capturing quercetin binding proteins, which can then be identified by LC-MS/MS. BioQ was shown to inhibit heat induction of HSP70 with almost the same efficiency as quercetin, and to both inhibit and photocrosslink to CK2 kinase, a known target of quercetin involved in activation of the heat shock transcription factor. BioQ was also able to pull down a number of proteins from unheated and heated Jurkat cells following UV irradiation that could be detected by both silver staining and Western blot analysis with an anti-biotin antibody. Analysis of the protein bands by trypsinization and LC-MS/MS led to the identification of heat shock proteins HSP70 and HSP90 as possible quercetin target proteins, along with ubiquitin-activating enzyme, a spliceosomal protein, RuvB-like 2 ATPases, and eukaryotic translation initiation factor 3. In addition, a mitochondrial ATPase was identified that has been previously shown to be a target of quercetin. Most of the proteins identified have also been previously suggested to be potential anticancer targets, suggesting that quercetin's antitumor activity may be due to its ability to inhibit multiple target proteins.
槲皮素是一种类黄酮天然产物,存在于许多食物中,已被发现具有广泛的药用功效。虽然已经鉴定出许多槲皮素结合蛋白,但尚未有系统的方法来鉴定槲皮素的所有潜在靶标。我们描述了一种 O7-生物素化的槲皮素衍生物(BioQ),它可以作为光亲和蛋白质组学试剂,用于捕获槲皮素结合蛋白,然后通过 LC-MS/MS 进行鉴定。BioQ 被证明能够以与槲皮素几乎相同的效率抑制 HSP70 的热诱导,并且能够抑制和光交联 CK2 激酶,这是槲皮素的一个已知靶标,参与热休克转录因子的激活。BioQ 还能够从未经热处理和加热的 Jurkat 细胞中拉下一些在 UV 照射后可以通过银染和抗生物素抗体的 Western blot 分析检测到的蛋白质。通过胰蛋白酶消化和 LC-MS/MS 对蛋白带进行分析,鉴定出 HSP70 和 HSP90 作为可能的槲皮素靶标蛋白,以及泛素激活酶、剪接体蛋白、RuvB 样 2 ATP 酶和真核翻译起始因子 3。此外,还鉴定出一种先前被证明是槲皮素靶标的线粒体 ATP 酶。已鉴定出的大多数蛋白质也以前被认为是潜在的抗癌靶标,这表明槲皮素的抗肿瘤活性可能是由于其抑制多种靶标蛋白的能力。