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Identification and characterization of a potent and biologically-active PDE4/7 inhibitor via fission yeast-based assays

机译:效率和生物活性PDE4 / 7抑制剂的鉴定和表征通过裂变酵母的测定

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摘要

AbstractWe previously constructed a collection of fission yeast strains that express various mammalian cyclic nucleotide phosphodiesterases (PDEs) and developed a cell-based high throughput screen (HTS) for small molecule PDE inhibitors. Here we describe a compound, BC54, that is a selective inhibitor of enzymes from the cAMP-specific PDE4 and PDE7 families. Consistent with the biological effect of other PDE4 and PDE7 inhibitors, BC54 displays potent anti-inflammatory properties and is superior to a combination of rolipram (a PDE4 inhibitor) and BRL50481 (a PDE7A inhibitor) for inducing apoptosis in chronic lymphocytic leukemia (CLL) cells. We further exploited PKA-regulated growth phenotypes in fission yeast to isolate two mutant alleles of the humanPDE4B2gene that encode enzymes possessing single amino acid changes that confer partial resistance to BC54. We confirm this resistance to both BC54 and rolipram via yeast-based assays and, for PDE4B2T407A,in vitroenzyme assays. Thus, we are able to use this system for both chemical screens to identify biologically-active PDE inhibitors and molecular genetic studies to characterize the interaction of these molecules with their target enzymes. Based on its potency, selectivity, and effectiveness in cell culture, BC54 should be a useful tool to study biological processes regulated by PDE4 and PDE7 enzymes.Graphical abstract
机译:摘要我们之前构建了一组表达各种哺乳动物环核苷酸磷酸二酯酶(PDE)的裂变酵母菌株,并开发了一种基于细胞的高通量筛选(HTS)用于小分子PDE抑制剂。在这里,我们描述了一种化合物BC54,它是来自cAMP特异性PDE4和PDE7家族的酶的选择性抑制剂。与其他PDE4和PDE7抑制剂的生物学效应一致,BC54显示出强大的抗炎特性,并且在诱导慢性淋巴细胞白血病(CLL)细胞凋亡方面优于罗利普兰(PDE4抑制剂)和BRL50481(PDE7A抑制剂)的组合。我们进一步利用裂殖酵母中PKA调节的生长表型,分离出人类PDE4B2基因的两个突变等位基因,这些基因编码的酶具有单一氨基酸变化,从而对BC54产生部分抗性。我们通过基于酵母的检测以及PDE4B2T407A体外酶检测证实了对BC54和罗利普兰的耐药性。因此,我们能够使用该系统进行化学筛选,以确定具有生物活性的PDE抑制剂,并进行分子遗传学研究,以表征这些分子与其目标酶的相互作用。基于其在细胞培养中的效力、选择性和有效性,BC54应该是研究由PDE4和PDE7酶调节的生物过程的有用工具图形摘要

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