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Converting a broad matrix metalloproteinase family inhibitor into a specific inhibitor of MMP-9 and MMP-14

机译:将广泛的基质金属蛋白酶家族抑制剂转化为MMP-9和MMP-14的特异性抑制剂

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摘要

MMP-14 and MMP-9 are two well established cancer targets for which no specific clinically relevant inhibitor is available. Using a powerful combination of computational design and yeast surface display technology, we engineered such an inhibitor starting from a non-specific MMP inhibitor, N-TIMP2. The engineered purified N-TIMP2 variants showed enhanced specificity towards MMP-14 and MMP-9 relative to a panel of off-target MMPs. MMP-specific N-TIMP2 sequence signatures were obtained that could be understood from the structural perspective of MMP/N-TIMP2 interactions. Our MMP-9 inhibitor exhibited 1000-fold preference for MMP-9 vs. MMP-14, which is likely to translate into significant differences under physiological conditions. Our results provide new insights regarding evolution of promiscuous proteins and optimization strategies for design of inhibitors with single-target specificities.
机译:MMP-14和MMP-9是两个公认的癌症靶标,没有针对其的临床相关特异性抑制剂。使用计算设计和酵母表面展示技术的强大组合,我们从非特异性MMP抑制剂N-TIMP2开始设计了这种抑制剂。相对于一组脱靶的MMP,工程改造的纯化的N-TIMP2变体显示出对MMP-14和MMP-9的增强的特异性。获得了MMP特异性的N-TIMP2序列签名,这可以从MMP / N-TIMP2相互作用的结构角度理解。与MMP-14相比,我们的MMP-9抑制剂对MMP-9表现出1000倍的偏好,这很可能在生理条件下转化为显着差异。我们的研究结果为混杂蛋白质的进化和设计具有单靶标特异性抑制剂的优化策略提供了新的见解。

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