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首页> 外文期刊>Nature chemical biology >Allosteric peptides bind a caspase zymogen and mediate caspase tetramerization
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Allosteric peptides bind a caspase zymogen and mediate caspase tetramerization

机译:变构肽结合半胱天冬酶酶原并介导半胱天冬酶四聚

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摘要

The caspases are a family of cytosolic proteases with essential roles in inflammation and apoptosis. Drug discovery efforts have focused on developing molecules directed against the active sites of caspases, but this approach has proved challenging and has not yielded any approved therapeutics. Here we describe a new strategy for generating inhibitors of caspase-6, a potential therapeutic target in neurodegenerative disorders, by screening against its zymogen form. Using phage display to discover molecules that bind the zymogen, we report the identification of a peptide that specifically impairs the function of caspase-6 in vitro and in neuronal cells. Remarkably, the peptide binds at a tetramerization interface that is uniquely present in zymogen caspase-6, rather than binding into the active site, and acts via a new allosteric mechanism that promotes caspase tetramerization. Our data illustrate that screening against the zymogen holds promise as an approach for targeting caspases in drug discovery.
机译:半胱天冬酶是胞质蛋白酶家族,在炎症和细胞凋亡中具有重要作用。药物发现的努力集中于开发针对胱天蛋白酶活性位点的分子,但是这种方法已被证明具有挑战性,并且未产生任何批准的疗法。在这里,我们通过筛选其酶原形式,描述了一种生成caspase-6抑制剂的新策略,caspase-6是神经退行性疾病的潜在治疗靶标。使用噬菌体展示来发现结合酶原的分子,我们报告了在体外和在神经元细胞中特异性损害caspase-6功能的肽的鉴定。值得注意的是,该肽结合在酶原胱天蛋白酶6中唯一存在的四聚化界面上,而不是结合到活性位点上,并通过促进胱天蛋白酶四聚化的新变构机制起作用。我们的数据表明,针对酶原的筛选有望在药物开发中作为针对胱天蛋白酶的一种方法。

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