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首页> 外文期刊>Journal of Medicinal Chemistry >The Design and Development of a Potent and Selective Novel Diprolyl Derivative That Binds to the N-Domain of Angiotensin-I Converting Enzyme
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The Design and Development of a Potent and Selective Novel Diprolyl Derivative That Binds to the N-Domain of Angiotensin-I Converting Enzyme

机译:有效和选择性新的双溴基衍生物的设计和开发与血管紧张素-I转化酶的N-结构域结合的偶极衍生物

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摘要

Angiotensin-I converting enzyme (ACE) is a zinc metalloprotease consisting of two catalytic domains (N- and C-). Most clinical ACE inhibitor(s) (ACEi) have been shown to inhibit both domains nonselectively, resulting in adverse effects such as cough and angioedema. Selectively inhibiting the individual domains is likely to reduce these effects and potentially treat fibrosis in addition to hypertension. ACEi from the GVK Biosciences database were inspected for possible N-domain selective binding patterns. From this set, a diprolyl chemical series was modeled using docking simulations. The series was expanded based on key target interactions involving residues known to impart N-domain selectivity. In total, seven diprolyl compounds were synthesized and tested for N-domain selective ACE inhibition. One compound with an aspartic acid in the P_(2) position (compound 16 ) displayed potent inhibition ( K _(i) = 11.45 nM) and was 84-fold more selective toward the N-domain. A high-resolution crystal structure of compound 16 in complex with the N-domain revealed the molecular basis for the observed selectivity.
机译:血管紧张素-I转化酶(ACE)是由两个催化结构域(N-和C-)组成的锌金属蛋白酶。大多数临床ACE抑制剂(ACEI)已被证明是非选择性的抑制域,导致咳嗽和血管后的不良反应。选择性抑制个体结构域可能会降低这些效果,并且除高血压外还可能治疗纤维化。从GVK Biosciences数据库中的ACEI被检查了可能的n域选择性绑定模式。从该组中,使用对接模拟建模双溴基化学系列。该系列基于涉及赋予N-域选择性的残留物的键靶相互作用来扩展。总共合成了七种二溴基化合物并测试并测试N-结构域选择性ACE抑制。在P_(2)位置(化合物16)中具有天冬氨酸的一种化合物(化合物16)显示有效的抑制(K _(I)= 11.45nm),朝向N-结构域选择84倍。与N-结构域复合物的化合物16的高分辨率晶体结构揭示了观察到的选择性的分子基。

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  • 来源
    《Journal of Medicinal Chemistry》 |2018年第1期|共16页
  • 作者单位

    Department of Chemistry University of Cape Town Rondebosch 7701 South Africa;

    Department of Biology and Biochemistry University of Bath Claverton Down Bath BA2 7AY U.K.;

    Department of Biology and Biochemistry University of Bath Claverton Down Bath BA2 7AY U.K.;

    Department of Chemistry University of Cape Town Rondebosch 7701 South Africa;

    Institute of Infectious Disease and Molecular Medicine University of Cape Town Observatory 7925 South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;
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