Identification of mouse cathepsin K structural elements that regulate the potency of odanacatib

组织蛋白酶K 效力 药理学 体内 组织蛋白酶 转基因 转基因小鼠 生物 化学 计算生物学 生物化学 体外 遗传学 基因 破骨细胞
作者
Simon Law,Pierre-Marie Andrault,A.H. Aguda,Nham T. Nguyen,N. E. Kruglyak,Gary D. Brayer,Dieter Brömme
出处
期刊:Biochemical Journal [Portland Press]
卷期号:474 (5): 851-864 被引量:31
标识
DOI:10.1042/bcj20160985
摘要

Cathepsin K (CatK) is the predominant mammalian bone-degrading protease and thus an ideal target for antiosteoporotic drug development. Rodent models of osteoporosis are preferred due to their close reflection of the human disease and their ease of handling, genetic manipulation and economic affordability. However, large differences in the potency of CatK inhibitors for the mouse/rat vs. the human protease orthologs have made it impossible to use rodent models. This is even more of a problem considering that the most advanced CatK inhibitors, including odanacatib (ODN) and balicatib, failed in human clinical trials due to side effects and rodent models are not available to investigate the mechanism of these failures. Here, we elucidated the structural elements of the potency differences between mouse and human CatK (hCatK) using ODN. We determined and compared the structures of inhibitor-free mouse CatK (mCatK), hCatK and ODN bound to hCatK. Two structural differences were identified and investigated by mutational analysis. Humanizing subsite 2 in mCatK led to a 5-fold improvement of ODN binding, whereas the replacement of Tyr61 in mCatK with Asp resulted in an hCatK with comparable ODN potency. Combining both sites further improved the inhibition of the mCatK variant. Similar results were obtained for balicatib. These findings will allow the generation of transgenic CatK mice that will facilitate the evaluation of CatK inhibitor adverse effects and to explore routes to avoid them.
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