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Structural analysis of caspase-1 inhibitors derived from Tethering

机译:束缚的caspase-1抑制剂的结构分析

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摘要

Caspase-1 is a key endopeptidase responsible for the post-translational processing of the IL-1β and IL-18 cytokines and small-molecule inhibitors that modulate the activity of this enzyme are predicted to be important therapeutic treatments for many inflammatory diseases. A fragment-assembly approach, accompanied by structural analysis, was employed to generate caspase-1 inhibitors. With the aid of Tethering® with extenders (small molecules that bind to the active-site cysteine and contain a free thiol), two novel fragments that bound to the active site and made a disulfide bond with the extender were identified by mass spectrometry. Direct linking of each fragment to the extender generated submicromolar reversible inhibitors that significantly reduced secretion of IL-1β but not IL-6 from human peripheral blood mononuclear cells. Thus, Tethering with extenders facilitated rapid identification and synthesis of caspase-1 inhibitors with cell-based activity and subsequent structural analyses provided insights into the enzyme’s ability to accommodate different inhibitor-binding modes in the active site.
机译:Caspase-1是负责IL-1β和IL-18细胞因子翻译后加工的关键内肽酶,调节这种酶活性的小分子抑制剂预计是许多炎性疾病的重要治疗方法。片段组装方法,伴随结构分析,被用来产生caspase-1抑制剂。借助Tethering ®与增量剂(与活性位半胱氨酸结合并含有游离硫醇的小分子),两个新的片段与活性位点结合并与增量剂形成二硫键通过质谱鉴定。每个片段与延伸剂的直接连接产生了亚微摩尔可逆抑制剂,该抑制剂可显着减少人外周血单核细胞分泌的IL-1β而不是IL-6。因此,与延伸剂的束缚有助于快速鉴定和合成具有基于细胞活性的caspase-1抑制剂,随后的结构分析提供了对该酶在活性位点中适应不同抑制剂结合方式的能力的见解。

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