脂蛋白
脂蛋白(a)
载脂蛋白B
低密度脂蛋白受体相关蛋白8
化学
脂蛋白颗粒
载脂蛋白C2
低密度脂蛋白
生物化学
极低密度脂蛋白
胆固醇
作者
N. Paniagua Díaz,Carlos A. Perez,Ana Escribano,Gema Sanz,Julián Priego,Celia Lafuente,Mario Barberis,Luis Calle,Juan F. Espinosa,Birgit T. Priest,Hong Y. Zhang,Amanda K. Nosie,Joseph V. Haas,Ellen A. Cannady,Anthony G. Borel,A. Eric Schultze,J.M. Sauder,J. Hendle,Kenneth Weichert,Stephen J. Nicholls
出处
期刊:Nature
[Nature Portfolio]
日期:2024-05-08
卷期号:629 (8013): 945-950
被引量:31
标识
DOI:10.1038/s41586-024-07387-z
摘要
Lipoprotein(a) (Lp(a)), an independent, causal cardiovascular risk factor, is a lipoprotein particle that is formed by the interaction of a low-density lipoprotein (LDL) particle and apolipoprotein(a) (apo(a))1,2. Apo(a) first binds to lysine residues of apolipoprotein B-100 (apoB-100) on LDL through the Kringle IV (KIV) 7 and 8 domains, before a disulfide bond forms between apo(a) and apoB-100 to create Lp(a) (refs. 3-7). Here we show that the first step of Lp(a) formation can be inhibited through small-molecule interactions with apo(a) KIV7-8. We identify compounds that bind to apo(a) KIV7-8, and, through chemical optimization and further application of multivalency, we create compounds with subnanomolar potency that inhibit the formation of Lp(a). Oral doses of prototype compounds and a potent, multivalent disruptor, LY3473329 (muvalaplin), reduced the levels of Lp(a) in transgenic mice and in cynomolgus monkeys. Although multivalent molecules bind to the Kringle domains of rat plasminogen and reduce plasmin activity, species-selective differences in plasminogen sequences suggest that inhibitor molecules will reduce the levels of Lp(a), but not those of plasminogen, in humans. These data support the clinical development of LY3473329-which is already in phase 2 studies-as a potent and specific orally administered agent for reducing the levels of Lp(a).
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