Department of Chemistry, Imperial College London, Molecular Sciences Research Hub, White City Campus, Wood Lane, London W12 0BZ, U.K.
National Lung and Heart Institute, Imperial College London, Du Cane Road, London W12 0NN, U.K.
J Am Chem Soc. 2021 May 5;143(17):6460-6469. doi: 10.1021/jacs.0c12864. Epub 2021 Apr 12.
Heme oxygenase-1 (HO-1) is a vital enzyme in humans that primarily regulates free heme concentrations. The overexpression of HO-1 is commonly associated with cardiovascular and neurodegenerative diseases including atherosclerosis and ischemic stroke. Currently, there are no known chemical probes to detect HO-1 activity, limiting its potential as an early diagnostic/prognostic marker in these serious diseases. Reported here are the design, synthesis, and photophysical and biological characterization of a coumarin-porphyrin FRET break-apart probe to detect HO-1 activity, . We designed to "break-apart" upon HO-1-catalyzed porphyrin degradation, perturbing the efficient FRET mechanism from a coumarin donor to a porphyrin acceptor fluorophore. Analysis of HO-1 activity using lysates overexpressing hHO-1 found that a increase in emission intensity at 383 nm was observed following incubation with NADPH. The identities of the degradation products following catabolism were confirmed by MALDI-MS and LC-MS, showing that porphyrin catabolism was regioselective at the α-position. Finally, through the analysis of , we have shown that close structural analogues of heme are required to maintain HO-1 activity. It is anticipated that this work will act as a foundation to design and develop new probes for HO-1 activity in the future, moving toward applications of live fluorescent imaging.
血红素加氧酶-1(HO-1)是人体内一种重要的酶,主要调节游离血红素的浓度。HO-1 的过表达通常与心血管和神经退行性疾病有关,包括动脉粥样硬化和缺血性中风。目前,尚无已知的化学探针可检测 HO-1 的活性,限制了其作为这些严重疾病早期诊断/预后标志物的潜力。本文报道了一种香豆素-卟啉 FRET 断裂探针的设计、合成以及光物理和生物学特性,用于检测 HO-1 的活性。我们设计了 ,以便在 HO-1 催化的卟啉降解时“断裂”,从而破坏香豆素供体到卟啉受体荧光团的有效 FRET 机制。使用表达 hHO-1 的细胞裂解物分析 HO-1 活性时,发现在与 NADPH 孵育后,在 383nm 处观察到发射强度增加了 。通过 MALDI-MS 和 LC-MS 确认了代谢产物的结构,表明卟啉代谢在α位具有区域选择性。最后,通过对 的分析,我们表明需要与血红素结构类似的物质来维持 HO-1 的活性。预计这项工作将为未来设计和开发 HO-1 活性的新探针奠定基础,朝着活荧光成像的应用方向发展。