Institute of Chemical and Engineering Sciences, 8 Biomedical Grove, Neuros #07-01, 138665, Singapore.
Chem Asian J. 2013 Aug;8(8):1818-28. doi: 10.1002/asia.201300303. Epub 2013 Jun 7.
3-Deazaneplanocin A (DzNep), a global histone methylation inhibitor, has attracted significant interest in epigenetic research in recent years. The molecular mechanism of action and the cellular off-targets of DzNep, however, are still not well-understood. Our aim was to develop novel DzNep-derived small-molecule probes suitable to be used in live mammalian cells for identification of potential cellular targets of DzNep under physiologically relevant settings. In the current study, we have successfully designed, synthesized, and tested one such probe, called DZ-1. DZ-1 is a 'clickable' affinity-based probe (AfBP) derived from DzNep with minimal structural modifications. The probe was found to be highly cell-permeable, and possessed similar anti-apoptotic activities as DzNep in MCF-7 mammalian cells. Two additional control probes were made as negative labeling/pull-down probes in order to minimize false identification of background proteins due to unavoidable, intrinsic nonspecific photo-crosslinking reactions. All three probes were subsequently used for in-situ proteome profiling in live mammalian cells, followed by large-scale pull-down/LC-MS/MS analysis for identification of potential cellular protein targets that might interact with DzNep in native cellular environments. Our LC-MS/MS results revealed some highly enriched proteins that had not been reported as potential DzNep targets. These proteins might constitute unknown cellular off-targets of DzNep. Though further validation experiments are needed in order to unequivocally confirm these off-targets, our findings shed new light on the future use of DzNep as a validated chemical probe for epigenetic research and as a potential drug candidate for cancer therapy.
3-去氮杂胞苷(DzNep)是一种全局组蛋白甲基化抑制剂,近年来在表观遗传学研究中引起了广泛关注。然而,DzNep 的作用机制和细胞非靶点仍未得到很好的理解。我们的目的是开发新型 DzNep 衍生的小分子探针,适用于活哺乳动物细胞,以在生理相关的条件下鉴定 DzNep 的潜在细胞靶点。在本研究中,我们成功设计、合成并测试了一种这样的探针,称为 DZ-1。DZ-1 是一种源自 DzNep 的“点击”亲和探针(AfBP),结构修饰最小。该探针具有高细胞通透性,并在 MCF-7 哺乳动物细胞中具有与 DzNep 相似的抗凋亡活性。另外两个控制探针被制成阴性标记/下拉探针,以尽量减少由于不可避免的固有非特异性光交联反应而导致的背景蛋白的错误鉴定。随后,所有三个探针都被用于活哺乳动物细胞中的原位蛋白质组谱分析,然后进行大规模下拉/LC-MS/MS 分析,以鉴定可能与天然细胞环境中的 DzNep 相互作用的潜在细胞蛋白靶点。我们的 LC-MS/MS 结果揭示了一些高度富集的蛋白质,这些蛋白质尚未被报道为潜在的 DzNep 靶点。这些蛋白质可能构成 DzNep 的未知细胞非靶点。尽管需要进一步的验证实验来明确确认这些非靶点,但我们的发现为未来将 DzNep 用作表观遗传学研究的验证化学探针以及癌症治疗的潜在药物候选物提供了新的思路。