Institute of Biological Chemistry, Academia Sinica, Taipei 115, Taiwan.
J Biol Chem. 2012 May 25;287(22):18750-7. doi: 10.1074/jbc.M112.351254. Epub 2012 Apr 3.
Zaragozic acids (ZAs) belong to a family of fungal metabolites with nanomolar inhibitory activity toward squalene synthase (SQS). The enzyme catalyzes the committed step of sterol synthesis and has attracted attention as a potential target for antilipogenic and antiinfective therapies. Here, we have determined the structure of ZA-A complexed with human SQS. ZA-A binding induces a local conformational change in the substrate binding site, and its C-6 acyl group also extends over to the cofactor binding cavity. In addition, ZA-A effectively inhibits a homologous bacterial enzyme, dehydrosqualene synthase (CrtM), which synthesizes the precursor of staphyloxanthin in Staphylococcus aureus to cope with oxidative stress. Size reduction at Tyr(248) in CrtM further increases the ZA-A binding affinity, and it reveals a similar overall inhibitor binding mode to that of human SQS/ZA-A except for the C-6 acyl group. These structures pave the way for further improving selectivity and development of a new generation of anticholesterolemic and antimicrobial inhibitors.
扎拉戈齐酸(ZAs)属于一类真菌代谢产物,对鲨烯合酶(SQS)具有纳摩尔抑制活性。该酶催化固醇合成的关键步骤,作为抗脂生成和抗感染治疗的潜在靶点引起了关注。在这里,我们已经确定了 ZA-A 与人 SQS 复合物的结构。ZA-A 结合诱导底物结合位点的局部构象变化,其 C-6 酰基基团也延伸到辅因子结合腔。此外,ZA-A 还能有效抑制同源细菌酶脱水鲨烯合酶(CrtM),后者在金黄色葡萄球菌中合成番茄红素前体以应对氧化应激。CrtM 中 Tyr(248)的缩小进一步增加了 ZA-A 的结合亲和力,它揭示了与人类 SQS/ZA-A 相似的整体抑制剂结合模式,除了 C-6 酰基基团。这些结构为进一步提高选择性和开发新一代降胆固醇和抗菌抑制剂铺平了道路。