Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, United States of America.
Department of Medicinal Chemistry, University of Washington, Seattle, Washington, United States of America.
PLoS One. 2013 Dec 18;8(12):e84582. doi: 10.1371/journal.pone.0084582. eCollection 2013.
The tyrosine phosphatase activity of the phosphatase-transactivator protein Eyes Absent (EYA) is angiogenic through its roles in endothelial cell migration and tube formation. Benzbromarone, a known anti-gout agent, was previously identified as an inhibitor of EYA with anti-angiogenic properties. Here we show that the major metabolite of BBR, 6-hydroxy benzbromarone, is a significantly more potent inhibitor of cell migration, tubulogenesis and angiogenic sprouting. In contrast, other postulated metabolites of BBR such as 5-hydroxy benzbromaorne and 1'-hydroxy benzbromarone are less potent inhibitors of EYA tyrosine phosphatase activity as well as being less effective in cellular assays for endothelial cell migration and angiogenesis. Longer substituents at the 2 position of the benzofuran ring promoted EYA3 binding and inhibition, but were less effective in cellular assays, likely reflecting non-specific protein binding and a resulting reduction in free, bio-available inhibitor. The observed potency of 6-hydroxy benzbromarone is relevant in the context of the potential re-purposing of benzbromarone and its derivatives as anti-angiogenic agents. 6-hydroxy benzbromarone represents a metabolite with a longer half-life and greater pharmacological potency than the parent compound, suggesting that biotransformation of benzbromarone could contribute to its therapeutic activity.
磷酸酶转录激活蛋白 Eyes Absent(EYA)的酪氨酸磷酸酶活性通过其在血管内皮细胞迁移和管形成中的作用具有血管生成作用。苯溴马隆是一种已知的抗痛风药物,先前被确定为具有抗血管生成特性的 EYA 抑制剂。在这里,我们表明 BBR 的主要代谢物 6-羟基苯溴马隆是一种更有效的细胞迁移、小管形成和血管生成芽生抑制剂。相比之下,BBR 的其他假定代谢物,如 5-羟基苯溴马隆和 1'-羟基苯溴马隆,对 EYA 酪氨酸磷酸酶活性的抑制作用较弱,并且在用于内皮细胞迁移和血管生成的细胞测定中效果较差。苯并呋喃环 2 位上较长的取代基促进了 EYA3 的结合和抑制,但在细胞测定中效果较差,可能反映了非特异性蛋白质结合,导致游离、生物可用抑制剂减少。观察到的 6-羟基苯溴马隆的效力与苯溴马隆及其衍生物作为抗血管生成剂的潜在再利用有关。6-羟基苯溴马隆代表一种代谢物,其半衰期比母体化合物长,药理学效力更大,表明苯溴马隆的生物转化可能有助于其治疗活性。