Department of Immunology/Microbiology, Rush University Medical Center, Chicago, Illinois, United States of America.
PLoS Negl Trop Dis. 2013;7(1):e2037. doi: 10.1371/journal.pntd.0002037. Epub 2013 Jan 31.
Phytochelatin synthase (PCS) is a protease-like enzyme that catalyzes the production of metal chelating peptides, the phytochelatins, from glutathione (GSH). In plants, algae, and fungi phytochelatin production is important for metal tolerance and detoxification. PCS proteins also function in xenobiotic metabolism by processing GSH S-conjugates. The aim of the present study is to elucidate the role of PCS in the parasitic worm Schistosoma mansoni. Recombinant S. mansoni PCS proteins expressed in bacteria could both synthesize phytochelatins and hydrolyze various GSH S-conjugates. We found that both the N-truncated protein and the N- and C-terminal truncated form of the enzyme (corresponding to only the catalytic domain) work through a thiol-dependant and, notably, metal-independent mechanism for both transpeptidase (phytochelatin synthesis) and peptidase (hydrolysis of GSH S-conjugates) activities. PCS transcript abundance was increased by metals and xenobiotics in cultured adult worms. In addition, these treatments were found to increase transcript abundance of other enzymes involved in GSH metabolism. Highest levels of PCS transcripts were identified in the esophageal gland of adult worms. Taken together, these results suggest that S. mansoni PCS participates in both metal homoeostasis and xenobiotic metabolism rather than metal detoxification as previously suggested and that the enzyme may be part of a global stress response in the worm. Because humans do not have PCS, this enzyme is of particular interest as a drug target for schistosomiasis.
植物螯合肽合酶(PCS)是一种蛋白酶样酶,能催化谷胱甘肽(GSH)生成金属螯合肽,即植物螯合肽。在植物、藻类和真菌中,植物螯合肽的生成对于金属耐受和解毒至关重要。PCS 蛋白还通过加工 GSH S-轭合物参与外来生物代谢。本研究旨在阐明 PCS 在寄生蠕虫曼氏血吸虫中的作用。在细菌中表达的重组 S. mansoni PCS 蛋白既能合成植物螯合肽,又能水解各种 GSH S-轭合物。我们发现,酶的 N 端截短蛋白和 N 端及 C 端截短形式(仅对应催化结构域)均通过硫依赖且显著的金属非依赖机制发挥作用,用于转肽酶(植物螯合肽合成)和肽酶(GSH S-轭合物水解)活性。金属和外来生物在培养的成虫中增加了 PCS 转录物的丰度。此外,这些处理被发现增加了 GSH 代谢中其他酶的转录物丰度。在成虫的食管腺中鉴定出最高水平的 PCS 转录物。综上所述,这些结果表明,S. mansoni PCS 参与金属稳态和外来生物代谢,而不是先前提出的金属解毒作用,并且该酶可能是蠕虫中整体应激反应的一部分。由于人类没有 PCS,这种酶作为血吸虫病的药物靶点特别有意义。