Wider Diana, Péli-Gulli Marie-Pierre, Briand Pierre-André, Tatu Utpal, Picard Didier
Département de Biologie Cellulaire, Université de Genève, Sciences III, 30 quai Ernest-Ansermet, Geneva, Switzerland.
Mol Biochem Parasitol. 2009 Apr;164(2):147-52. doi: 10.1016/j.molbiopara.2008.12.011.
Developing novel drugs against the unicellular parasite Plasmodium is complicated by the paucity of simple screening systems. Heat-shock proteins are an essential class of proteins for the parasite's cyclical life style between different cellular milieus and temperatures. The molecular chaperone Hsp90 assists a large variety of proteins, but its supporting functions for many proteins that are important for cancer have made it into a well-studied drug target. With a better understanding of the differences between Hsp90 and of the malarial parasite and Hsp90 of its human host, new therapeutic options might become available. We have generated a set of isogenic strains of the budding yeast Saccharomyces cerevisiae where the essential yeast Hsp90 proteins have been replaced with either of the two human cytosolic isoforms Hsp90alpha or Hsp90beta, or with Hsp90 from Plasmodium falciparum (Pf). All strains express large amounts of the Flag-tagged Hsp90 proteins and are viable. Even though the strain with Pf Hsp90 grows more poorly, it provides a tool to reconstitute additional aspects of the parasite Hsp90 complex and its interactions with substrates in yeast as a living test tube. Upon exposure of the set of Hsp90 test strains to the two Hsp90 inhibitors radicicol (Rd) and geldanamycin (GA), we found that the strain with Pf Hsp90 is relatively more sensitive to GA than to Rd compared to the strains with human Hsp90's. This indicates that this set of yeast strains could be used to screen for new Pf Hsp90 inhibitors with a wider therapeutic window.
由于缺乏简单的筛选系统,开发针对单细胞寄生虫疟原虫的新型药物变得很复杂。热休克蛋白是寄生虫在不同细胞环境和温度之间循环生活方式所必需的一类蛋白质。分子伴侣Hsp90辅助多种蛋白质,但它对许多对癌症很重要的蛋白质的支持功能使其成为一个经过充分研究的药物靶点。随着对Hsp90之间差异以及疟原虫的Hsp90与其人类宿主的Hsp90的更好理解,可能会有新的治疗选择。我们构建了一组芽殖酵母酿酒酵母的同基因菌株,其中必需的酵母Hsp90蛋白已被两种人类胞质异构体Hsp90α或Hsp90β之一,或被恶性疟原虫(Pf)的Hsp90取代。所有菌株都大量表达带有Flag标签的Hsp90蛋白且可存活。尽管含有Pf Hsp90的菌株生长较差,但它提供了一种工具,可在作为活试管的酵母中重建寄生虫Hsp90复合物的其他方面及其与底物的相互作用。将这组Hsp90测试菌株暴露于两种Hsp90抑制剂放线菌酮(Rd)和格尔德霉素(GA)后,我们发现与含有人类Hsp90的菌株相比,含有Pf Hsp90的菌株对GA相对比对Rd更敏感。这表明这组酵母菌株可用于筛选具有更宽治疗窗口的新型Pf Hsp90抑制剂。