Article
作者: Cons, Benjamin D. ; Hamlett, Christopher C. F. ; Hodson, Charlotte ; Holding, Finn ; Wallis, Nicola G. ; Castro, Joan N. ; Peakman, Torren ; Johnson, Christopher N. ; Palmer, Nick ; Liebeschuetz, John W. ; Woodhead, Andrew ; Buffham, William J. ; Benn, Caroline ; Dawson, Lee A. ; Rapti, Magdalini ; Schöpf, Patrick ; O’Reilly, Marc ; Agnew, Christopher ; St-Denis, Jeffrey D. ; Valenzano, Chiara ; Wilsher, Nicola E. ; Reeks, Judith ; Chessari, Gianni ; Tisi, Dominic ; Coyle, Joseph E. ; Clark, Mellissa ; Walser, Reto ; Weir, Heather ; Price, Amanda ; McCarthy, James M. ; Mahajan, Pravin ; Murray, Christopher W. ; Bento, Carla F.
β-Glucocerebrosidase (GBA/GCase) mutations leading to misfolded protein cause Gaucher's disease and are a major genetic risk factor for Parkinson's disease and dementia with Lewy bodies. The identification of small molecule pharmacological chaperones that can stabilize the misfolded protein and increase delivery of degradation-prone mutant GCase to the lysosome is a strategy under active investigation. Here, we describe the first use of fragment-based drug discovery (FBDD) to identify pharmacological chaperones of GCase. The fragment hits were identified by using X-ray crystallography and biophysical techniques. This work led to the discovery of a series of compounds that bind GCase with nM potency and positively modulate GCase activity in cells.