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Ahp-Cyclodepsipeptide Inhibitors of Elastase: Lyngbyastatin 7 Stability, Scalable Synthesis, and Focused Library Analysis

机译:弹性蛋白酶的AHP-环糊精抑制剂:LyngbyAstatin 7稳定性,可扩展合成和聚焦文库分析

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Due to the potency and selectivity of lyngbyastatin 7 in inhibiting neutrophil elastase, a serine protease involved in numerous diseases, this cyclodepsipeptide was considered as a promising lead and subjected to further developmental studies. Lyngbyastatin 7 displayed a favorable serum and microsomal stability profile. The large-scale synthesis of key building blocks was performed on gram scale with improved yields and simplified purification procedures. To tailor the complex structure, define the minimal pharmacophore, and modulate the physicochemical properties of the lead scaffold, the first pilot library of analogues was designed and synthesized for structure-activity relationship studies. We uncovered the essential role of the side chain, indicating that the minimal structural requirements for elastase inhibition extended beyond the 3-amino-6-hydroxy-2-piperidone (Ahp) and 2-aminobutenoic acid (Abu) moieties conventionally known to convey antiprotease activity and elastase selectivity, respectively. Our studies will facilitate the design and development of this class of elastase inhibitors.
机译:由于LyngbyAstatin 7在抑制中性粒细胞弹性蛋白酶中的效力和选择性,涉及许多疾病的丝氨酸蛋白酶被认为是有前途的铅并进行进一步的发育研究。 LyngyAstatin 7显示出有利的血清和微粒体稳定性曲线。以克拉尺度进行键构建块的大规模合成,并提高产量和简化的净化程序。为了定制复杂的结构,定义最小的药镜,并调节引线支架的物理化学性质,设计和合成了用于结构 - 活性关系研究的第一试点库。我们发现侧链的基本作用,表明弹性蛋白酶抑制的最小结构要求延伸超过3-氨基-6-羟基-2-哌啶酮(AHP)和2-氨基丁烯酸(ABU)部分来传达抗滴油酶活动和弹性蛋白选择性。我们的研究将促进这类弹性蛋白酶抑制剂的设计和开发。

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