Radchenko Yevhenii, Su Qin, Schröder Sybrin S, van Gijlswijk Luke, Artola Marta, Aerts Johannes M F G, Codée Jeroen D C, Overkleeft Herman S
Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC, Leiden, The Netherlands.
Chemistry. 2024 Dec 13;30(70):e202402988. doi: 10.1002/chem.202402988. Epub 2024 Nov 3.
Cyclophellitol is a potent and selective mechanism-based retaining β-glucosidase inhibitor that has served as a versatile starting point for the development of activity-based glycosidase probes (ABPs). We developed routes of synthesis of eight mono- and dideoxycyclophellitols and cyclophellitol aziridines, the latter as ABPs carrying either a biotin or fluorophore linked to the aziridine nitrogen. We reveal the potency of these 24 compounds as inhibitors of the three human retaining β-glucosidases, GBA1, GBA2 and GBA3. We show that 3,6-dideoxy-β-galacto-cyclophellitol aziridine selectively captures GBA3 over GBA1 and GBA2 in extracts of cells overexpressing both GBA2 and GBA3. We also identify a probe that selectively labels GBA1 and GBA2 over GBA3 at lower concentrations. In sum, the here-presented studies reveal new chemistries to prepare chiral, substituted cyclitol epoxides and aziridines, add to the growing suite of cyclophellitols varying in configuration and substitution pattern, and yielded a reagent that may find use to investigate the physiological role and therapeutic relevance of the most elusive of the three retaining β-glucosidases: GBA3.
环庚糖醇是一种强效且具有选择性的基于机制的保留型β-葡萄糖苷酶抑制剂,它已成为基于活性的糖苷酶探针(ABP)开发的通用起点。我们开发了八种单脱氧和双脱氧环庚糖醇以及环庚糖醇氮丙啶的合成路线,后者作为ABP,其氮丙啶氮上连接有生物素或荧光团。我们揭示了这24种化合物作为三种人类保留型β-葡萄糖苷酶GBA1、GBA2和GBA3抑制剂的效力。我们表明,在同时过表达GBA2和GBA3的细胞提取物中,3,6-二脱氧-β-半乳糖-环庚糖醇氮丙啶相对于GBA1和GBA2能选择性地捕获GBA3。我们还鉴定出一种在较低浓度下相对于GBA3能选择性标记GBA1和GBA2的探针。总之,本文所呈现的研究揭示了制备手性、取代环糖醇环氧化物和氮丙啶的新化学方法,增加了构型和取代模式各异的环庚糖醇种类,并产生了一种试剂,可用于研究三种保留型β-葡萄糖苷酶中最难以捉摸的GBA3的生理作用和治疗相关性。