首页> 外文期刊>Cell stress & chaperones >High-throughput screening system for inhibitors of human Heat Shock Factor 2
【24h】

High-throughput screening system for inhibitors of human Heat Shock Factor 2

机译:人热休克因子2抑制剂的高通量筛选系统

获取原文
           

摘要

Development of novel anti-cancer drug leads that target regulators of protein homeostasis is a formidable task in modern pharmacology. Finding specific inhibitors of human Heat Shock Factor 1 (hHSF1) has proven to be a challenging task, while screening for inhibitors of human Heat Shock Factor 2 (hHSF2) has never been described. We report the development of a novel system based on an in vivo cell growth restoration assay designed to identify specific inhibitors of human HSF2 in a high-throughput format. This system utilizes a humanized yeast strain in which the master regulator of molecular chaperone genes, yeast HSF, has been replaced with hHSF2 with no detrimental effect on cell growth. This replacement preserves the general regulatory patterns of genes encoding major molecular chaperones including Hsp70 and Hsp90. The controlled overexpression of hHSF2 creates a slow-growth phenotype, which is the basis of the growth restoration assay used for high-throughput screening. The phenotype is most robust when cells are cultured at 25?°C, while incubation at temperatures greater than 30?°C leads to compensation of the phenotype. Overexpression of hHSF2 causes overexpression of molecular chaperones which is a likely cause of the slowed growth. Our assay is characterized by two unique advantages. First, screening takes place in physiologically relevant, in vivo conditions. Second, hits in our screen will be of medically relevant potency, as compounds that completely inhibit hHSF2 function will further inhibit cell growth and therefore will not be scored as hits. This caveat biases our screening system for compounds capable of restoring hHSF2 activity to a physiologically normal level without completely inhibiting this essential system.
机译:新型抗癌药物的开发导致靶向蛋白质稳态的调节剂,这是现代药理学中的艰巨任务。发现人类热激因子1(hHSF1)的特定抑制剂已被证明是一项艰巨的任务,而从未描述过筛选人类热激因子2(hHSF2)的抑制剂。我们报告了基于体内细胞生长恢复测定法的新型系统的开发,该测定法旨在以高通量形式鉴定人HSF2的特异性抑制剂。该系统利用人源化的酵母菌株,其中分子伴侣基因的主调节剂酵母HSF已被hHSF2取代,而对细胞生长没有不利影响。这种替换保留了编码主要分子伴侣(包括Hsp70和Hsp90)的基因的一般调控模式。 hHSF2的受控过表达产生了缓慢生长的表型,这是用于高通量筛选的生长恢复测定的基础。当细胞在25°C下培养时,该表型最为稳健,而在高于30°C的温度下孵育则可补偿该表型。 hHSF2的过表达导致分子伴侣的过表达,这可能是生长缓慢的原因。我们的测定法具有两个独特的优势。首先,筛选是在生理相关的体内条件下进行的。第二,我们筛选中的点击具有与医学相关的功效,因为完全抑制hHSF2功能的化合物将进一步抑制细胞生长,因此不会被评为点击。此警告使我们的筛选系统偏向于能够将hHSF2活性恢复至生理正常水平而不会完全抑制该基本系统的化合物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号