Ferguson Andrew D
Discovery Sciences, AstraZeneca Pharmaceuticals, Waltham, MA, USA.
Methods Mol Biol. 2012;841:267-90. doi: 10.1007/978-1-61779-520-6_12.
Leukotrienes are biologically active lipid metabolites of arachidonic acid that are involved in inflammation and play a significant role in respiratory and cardiovascular disease. The integral nuclear membrane protein 5-lipoxygenase-activating protein (FLAP) is essential for leukotriene biosynthesis in response to cellular activation. The crystal structures of human FLAP with two inhibitors were recently determined. Inhibitors are bound within the lipid-exposed portion of FLAP, and the unexpected location of the inhibitor-binding site suggests a transport mechanism for arachidonic acid and provides functional insights into leukotriene biosynthesis. This chapter describes how this human integral membrane crystal structure was solved by pushing the limits of low-resolution structure determination and refinement, demonstrating how a low-resolution structure can impact biology and chemistry, and discusses future opportunities for structure-based drug design for this therapeutic target.
白三烯是花生四烯酸具有生物活性的脂质代谢产物,参与炎症反应,在呼吸系统和心血管疾病中发挥重要作用。整合核膜蛋白5-脂氧合酶激活蛋白(FLAP)对于细胞激活后白三烯的生物合成至关重要。最近确定了人FLAP与两种抑制剂的晶体结构。抑制剂结合在FLAP的脂质暴露部分内,抑制剂结合位点的意外位置提示了花生四烯酸的转运机制,并为白三烯生物合成提供了功能见解。本章描述了如何通过突破低分辨率结构测定和精修的极限来解析这种人整合膜晶体结构,展示了低分辨率结构如何影响生物学和化学,并讨论了针对该治疗靶点基于结构的药物设计的未来机遇。