Biology Department, Boston College, Chestnut Hill, Massachusetts, United States of America.
PLoS One. 2013 Aug 14;8(8):e71279. doi: 10.1371/journal.pone.0071279. eCollection 2013.
A cell-based high-throughput screen (HTS) was developed to detect phosphodiesterase 8 (PDE8) and PDE4/8 combination inhibitors. By replacing the Schizosaccharomyces pombe PDE gene with the murine PDE8A1 gene in strains lacking adenylyl cyclase, we generated strains whose protein kinase A (PKA)-stimulated growth in 5-fluoro orotic acid (5FOA) medium reflects PDE8 activity. From our previously-identified PDE4 and PDE7 inhibitors, we identified a PDE4/8 inhibitor that allowed us to optimize screening conditions. Of 222,711 compounds screened, ∼0.2% displayed composite Z scores of >20. Additional yeast-based assays using the most effective 367 compounds identified 30 candidates for further characterization. Among these, compound BC8-15 displayed the lowest IC₅₀ value for both PDE4 and PDE8 inhibition in in vitro enzyme assays. This compound also displays significant activity against PDE10A and PDE11A. BC8-15 elevates steroidogenesis in mouse Leydig cells as a single pharmacological agent. Assays using BC8-15 and two structural derivatives support a model in which PDE8 is a primary regulator of testosterone production by Leydig cells, with an additional role for PDE4 in this process. BC8-15, BC8-15A, and BC8-15C, which are commercially available compounds, display distinct patterns of activity against PDE4, PDE8, PDE10A, and PDE11A, representing a chemical toolkit that could be used to examine the biological roles of these enzymes in cell culture systems.
建立了基于细胞的高通量筛选(HTS)平台,用于检测磷酸二酯酶 8(PDE8)和 PDE4/8 双重抑制剂。通过用鼠源 PDE8A1 基因替换缺乏腺苷酸环化酶的酿酒酵母中的 PDE 基因,我们构建了蛋白激酶 A(PKA)刺激生长于 5-氟乳清酸(5FOA)培养基中的酵母株,该酵母株的 PDE8 活性可以被检测到。从我们先前鉴定的 PDE4 和 PDE7 抑制剂中,我们鉴定出一种 PDE4/8 抑制剂,该抑制剂可优化筛选条件。在对 222711 种化合物进行筛选后,约有 0.2%的化合物的复合 Z 分数大于 20。使用最有效的 367 种化合物进行的另外两项酵母基础实验鉴定出 30 种化合物作为进一步研究的候选物。在这些化合物中,化合物 BC8-15 在体外酶实验中对 PDE4 和 PDE8 的抑制作用的 IC₅₀值最低。该化合物还对 PDE10A 和 PDE11A 具有显著的抑制作用。BC8-15 作为单一药物可提高小鼠睾丸间质细胞中的类固醇生成。使用 BC8-15 和两种结构衍生物的实验支持这样一种模型,即 PDE8 是睾丸间质细胞产生睾酮的主要调节因子,而 PDE4 在该过程中起辅助作用。BC8-15、BC8-15A 和 BC8-15C 是商业上可获得的化合物,对 PDE4、PDE8、PDE10A 和 PDE11A 具有不同的活性模式,代表了一种化学工具包,可用于在细胞培养系统中研究这些酶的生物学作用。