Safa Nora, Pettigrew Jacob H, Gauthier Ted J, Melvin Adam T
Cain Department of Chemical Engineering, Louisiana State University, Baton Rouge, LA, 70803.
LSU AgCenter Biotechnology Lab, Louisiana State University, Baton Rouge, LA, 70803.
Biochem Eng J. 2019 Nov 15;151. doi: 10.1016/j.bej.2019.107320. Epub 2019 Jul 29.
Deubiquitinating enzymes (DUBs) regulate the removal of the polyubiquitin chain from proteins targeted for degradation. Current approaches to quantify DUB activity are limited to test tube-based assays that incorporate enzymes or cell lysates, but not intact cells. The goal of this work was to develop a novel peptide-based biosensor of DUB activity that is cell permeable, protease-resilient, fluorescent, and specific to DUBs. The biosensor consists of an N-terminal β-hairpin motif that acts as both a 'protectide' to increase intracellular stability and a cell penetrating peptide (CPP) to facilitate the uptake into intact cells. The β-hairpin was conjugated to a C-terminal substrate consisting of the last four amino acids in ubiquitin (LRGG) to facilitate DUB mediated cleavage of a C-terminal fluorophore (AFC). The kinetics of the peptide reporter were characterized in cell lysates by dose response and inhibition enzymology studies. Inhibition studies with an established DUB inhibitor (PR-619) confirmed the specificity of both reporters to DUBs. Fluorometry and fluorescent microscopy experiments followed by mathematical modeling established the capability of the biosensor to measure DUB activity in intact cells while maintaining cellular integrity. The novel reporter introduced here is compatible with high-throughput single cell analysis platforms such as FACS and droplet microfluidics facilitating direct quantification of DUB activity in single intact cells with direct application in point-of-care cancer diagnostics and drug discovery.
去泛素化酶(DUBs)调节从靶向降解的蛋白质上移除多聚泛素链的过程。目前量化DUB活性的方法仅限于基于试管的分析,这些分析采用酶或细胞裂解物,但不包括完整细胞。这项工作的目标是开发一种新型的基于肽的DUB活性生物传感器,它具有细胞渗透性、抗蛋白酶性、荧光性且对DUBs具有特异性。该生物传感器由一个N端β-发夹基序组成,它既作为一种“保护肽”以增加细胞内稳定性,又作为一种细胞穿透肽(CPP)以促进进入完整细胞。β-发夹与一个C端底物相连,该底物由泛素的最后四个氨基酸(LRGG)组成,以促进DUB介导的C端荧光团(AFC)的切割。通过剂量反应和抑制酶学研究在细胞裂解物中表征了肽报告分子的动力学。用一种已确立的DUB抑制剂(PR-619)进行的抑制研究证实了两种报告分子对DUBs的特异性。荧光测定和荧光显微镜实验以及随后的数学建模确定了该生物传感器在保持细胞完整性的同时测量完整细胞中DUB活性的能力。这里介绍的新型报告分子与诸如荧光激活细胞分选(FACS)和液滴微流控等高通量单细胞分析平台兼容,便于直接量化单个完整细胞中的DUB活性,可直接应用于即时癌症诊断和药物发现。