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Identification and Characterization of Novel Classes of Macrophage Migration Inhibitory Factor (MIF) Inhibitors with Distinct Mechanisms of Action

机译:具有不同作用机制的新型新型巨噬细胞迁移抑制因子(MIF)抑制剂的鉴定和表征

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摘要

Macrophage migration inhibitory factor (MIF), a proinflammatory cytokine, is considered an attractive therapeutic target in multiple inflammatory and autoimmune disorders. In addition to its known biologic activities, MIF can also function as a tautomerase. Several small molecules have been reported to be effective inhibitors of MIF tautomerase activity in vitro. Herein we employed a robust activity-based assay to identify different classes of novel inhibitors of the catalytic and biological activities of MIF. Several novel chemical classes of inhibitors of the catalytic activity of MIF with IC50 values in the range of 0.2–15.5 μm were identified and validated. The interaction site and mechanism of action of these inhibitors were defined using structure-activity studies and a battery of biochemical and biophysical methods. MIF inhibitors emerging from these studies could be divided into three categories based on their mechanism of action: 1) molecules that covalently modify the catalytic site at the N-terminal proline residue, Pro1; 2) a novel class of catalytic site inhibitors; and finally 3) molecules that disrupt the trimeric structure of MIF. Importantly, all inhibitors demonstrated total inhibition of MIF-mediated glucocorticoid overriding and AKT phosphorylation, whereas ebselen, a trimer-disrupting inhibitor, additionally acted as a potent hyperagonist in MIF-mediated chemotactic migration. The identification of biologically active compounds with known toxicity, pharmacokinetic properties, and biological activities in vivo should accelerate the development of clinically relevant MIF inhibitors. Furthermore, the diversity of chemical structures and mechanisms of action of our inhibitors makes them ideal mechanistic probes for elucidating the structure-function relationships of MIF and to further determine the role of the oligomerization state and catalytic activity of MIF in regulating the function(s) of MIF in health and disease.
机译:巨噬细胞迁移抑制因子(MIF),一种促炎细胞因子,被认为是多种炎症和自身免疫性疾病的诱人治疗靶标。除了已知的生物活性外,MIF还可以充当互变异构酶。据报道,几种小分子是体外MIF互变异构酶活性的有效抑制剂。在本文中,我们采用了一种基于活性的稳健测定方法,以鉴定不同类别的MIF催化和生物活性新型抑制剂。鉴定并验证了几种新颖的化学类别的MIF催化活性抑制剂,IC50值在0.2-15.5μm范围内。使用结构活性研究以及一系列生化和生物物理方法定义了这些抑制剂的相互作用位点和作用机理。从这些研究中得出的MIF抑制剂根据其作用机理可分为三类:1)在N末端脯氨酸残基Pro 1 上共价修饰催化位点的分子; 2)一类新型的催化位点抑制剂;最后3)破坏MIF三聚体结构的分子。重要的是,所有抑制剂均显示出对MIF介导的糖皮质激素覆盖和AKT磷酸化的完全抑制作用,而三聚体破坏抑制剂ebselen在MIF介导的趋化性迁移中还充当了强效激动剂。具有体内已知毒性,药代动力学特性和生物活性的生物活性化合物的鉴定应加快临床相关MIF抑制剂的开发。此外,我们的抑制剂的化学结构和作用机理的多样性使其成为阐明MIF的结构-功能关系并进一步确定MIF的低聚状态和催化活性在调节功能中的作用的理想机械探针。 MIF在健康和疾病中的作用

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