Malopolska Centre of Biotechnology, Jagiellonian University, Gronostajowa 7a, 30-387, Kraków, Poland.
Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Gronostajowa 7, 30-387, Kraków, Poland.
Sci Rep. 2022 Aug 29;12(1):14705. doi: 10.1038/s41598-022-18841-1.
Trypanosomiases are life-threatening infections of humans and livestock, and novel effective therapeutic approaches are needed. Trypanosoma compartmentalize glycolysis into specialized organelles termed glycosomes. Most of the trypanosomal glycolytic enzymes harbor a peroxisomal targeting signal-1 (PTS1) which is recognized by the soluble receptor PEX5 to facilitate docking and translocation of the cargo into the glycosomal lumen. Given its pivotal role in the glycosomal protein import, the PEX5-PTS1 interaction represents a potential target to inhibit import of glycolytic enzymes and thus kill the parasite. We developed a fluorescence polarization (FP)-based assay for monitoring the PEX5-PTS1 interaction and performed a High Throughput Screening (HTS) campaign to identify small molecule inhibitors of the interaction. Six of the identified hits passed orthogonal selection criteria and were found to inhibit parasite growth in cell culture. Our results validate PEX5 as a target for small molecule inhibitors and provide scaffolds suitable for further pre-clinical development of novel trypanocidal compounds.
锥虫病是危及人类和牲畜生命的传染病,需要新的有效治疗方法。锥虫将糖酵解分成专门的细胞器,称为糖体。大多数锥虫糖酵解酶都带有过氧化物酶体靶向信号-1(PTS1),该信号被可溶性受体 PEX5 识别,以促进货物对接和易位到糖体腔中。鉴于其在糖体蛋白导入中的关键作用,PEX5-PTS1 相互作用代表了抑制糖酵解酶导入并因此杀死寄生虫的潜在目标。我们开发了一种基于荧光偏振(FP)的测定法来监测 PEX5-PTS1 相互作用,并进行了高通量筛选(HTS)活动,以鉴定该相互作用的小分子抑制剂。鉴定出的 6 个命中物通过正交选择标准,并发现可抑制细胞培养中的寄生虫生长。我们的结果验证了 PEX5 作为小分子抑制剂的靶标,并提供了适合进一步开发新型杀锥虫化合物的临床前开发的支架。