Department of Chemistry, University of North Carolina, Chapel Hill, NC, 27599, USA.
Department of Chemistry, Division of Chemical Biology and Medicinal Chemistry and Department of Pharmacology, University of North Carolina, Chapel Hill, NC, 27599, USA.
Angew Chem Int Ed Engl. 2016 Oct 10;55(42):13095-13098. doi: 10.1002/anie.201606914.
Tools to evaluate oncogenic kinase activity in small clinical samples have the power to guide precision medicine in oncology. Existing platforms have demonstrated impressive insights into the activity of protein kinases, but these technologies are unsuitable for the study of kinase behavior in large numbers of primary human cells. To address these limitations, we developed an integrated analysis system that utilizes a light-programmable, cell-permeable reporter deliverable simultaneously to many cells. The reporter's ability to act as a substrate for Akt, a key oncogenic kinase, was masked by a 2-4,5-dimethoxy 2-nitrobenzyl (DMNB) moiety. Upon exposure to ultraviolet light and release of the masking moiety, the substrate sequence enabled programmable reaction times within the cell cytoplasm. When coupled to automated single-cell capillary electrophoresis, statistically significant numbers of primary human cells were readily evaluated for Akt activity.
用于评估小临床样本中成瘤激酶活性的工具具有指导肿瘤精准医学的能力。现有的平台已经展示了对蛋白激酶活性的深刻见解,但这些技术不适合研究大量原代人细胞中的激酶行为。为了解决这些限制,我们开发了一种集成分析系统,该系统利用光可程控、细胞渗透性报告器,可同时递送至许多细胞。报告器作为关键致癌激酶 Akt 的底物的能力被 2-4,5-二甲氧基-2-硝基苄基(DMNB)部分所掩盖。在暴露于紫外光和释放掩蔽部分后,该底物序列使细胞质内的可编程反应时间成为可能。当与自动化单细胞毛细管电泳结合使用时,很容易对大量原代人细胞进行 Akt 活性评估。