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Ultrasensitive small molecule fluorogenic probe for human heparanase
Authors:Jun Liu  Kelton A. Schleyer  Tyrel L. Bryan  Changjian Xie  Gustavo Seabra  Yongmei Xu  Arjun Kafle  Chao Cui  Ying Wang  Kunlun Yin  Benjamin Fetrow  Paul K. P. Henderson  Peter Z. Fatland  Jian Liu  Chenglong Li  Hua Guo  Lina Cui
Affiliation:Department of Chemistry and Chemical Biology, University of New Mexico, Albuquerque NM 87131 USA ; Department of Medicinal Chemistry, College of Pharmacy, University of Florida, Gainesville FL 32610 USA.; Division of Chemical Biology and Medicinal Chemistry, Eshelman School of Pharmacy, University of North Carolina, Chapel Hill NC 27599 USA
Abstract:Heparanase (HPA) is a critical enzyme involved in the remodeling of the extracellular matrix (ECM), and its elevated expression has been linked with diseases such as various types of cancer and inflammation. The detection of heparanase enzymatic activity holds tremendous value in the study of the cellular microenvironment, and search of molecular therapeutics targeting heparanase, however, no structurally defined probes are available for the detection of heparanase activity. Here we present the development of the first ultrasensitive fluorogenic small-molecule probe for heparanase enzymatic activity via tuning the electronic effect of the substrate. The probe exhibits a 756-fold fluorescence turn-on response in the presence of human heparanase, allowing one-step detection of heparanase activity in real-time with a picomolar detection limit. The high sensitivity and robustness of the probe are exemplified in a high-throughput screening assay for heparanase inhibitors.

Heparanase, a critical enzyme involved in the remodeling of the extracellular matrix, activates a disaccharide probe HADP to give a strong fluorescence signal.
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