Department of Pharmacology "Mario Aiazzi Mancini", University of Florence, 50139 Florence, Italy.
J Biol Chem. 2010 Jul 23;285(30):23477-85. doi: 10.1074/jbc.M110.125153. Epub 2010 May 25.
In recent years, an approach called "chemical genetics" has been adopted in drug research to discover and validate new targets and to identify and optimize leads by high throughput screening. In this work, we tested the ability of a library of small peptidomimetics to induce phenotypic effects with functional implications on a panel of strains of the budding yeast Saccharomyces cerevisiae, both wild type and mutants, for respiratory function and multidrug resistance. Further elucidation of the function of these peptidomimetics was assessed by testing the effects of the compound with the most prominent inhibitory activity, 089, on gene expression using DNA microarrays. Pathway analysis showed the involvement of such a molecule in inducing oxidative damage through alterations in mitochondrial functions. Transcriptional experiments were confirmed by increased levels of ROS and activation of mitochondrial membrane potential. Our results demonstrate the influence of a functional HAP1 gene in the performance of S. cerevisiae as a model system.
近年来,药物研究中采用了一种称为“化学遗传学”的方法,通过高通量筛选来发现和验证新的靶标,并识别和优化先导化合物。在这项工作中,我们测试了一小部分肽模拟物文库诱导表型效应的能力,这些效应对一组酿酒酵母(Saccharomyces cerevisiae)的菌株具有功能意义,包括野生型和突变型,涉及呼吸功能和多药耐药性。通过使用 DNA 微阵列测试具有最显著抑制活性的化合物 089 对基因表达的影响,进一步阐明了这些肽模拟物的功能。通路分析表明,这种分子通过改变线粒体功能诱导氧化损伤。转录实验通过增加 ROS 水平和激活线粒体膜电位得到证实。我们的结果表明,功能性 HAP1 基因在酿酒酵母作为模型系统中的表现中具有重要影响。