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ACE-domain selectivity extends beyond direct interacting residues at the active site

机译:ACE域选择性在活动场所的直接相互作用残留情况下延伸

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摘要

Angiotensin-converting enzyme (ACE) is best known for its formation of the vasopressor angiotensin II that controls blood pressure but is also involved in other physiological functions through the hydrolysis of a variety of peptide substrates. The enzyme contains two catalytic domains (nACE and cACE) that have different affinities for ACE substrates and inhibitors. We investigated whether nACE inhibitor backbones contain a unique property which allows them to take advantage of the hinging of nACE. Kinetic analysis showed that mutation of unique nACE residues, in both the S2 pocket and around the prime subsites (S') to their C-domain counterparts, each resulted in a decrease in the affinity of nACE specific inhibitors (SG6, 33RE and ketoACE-13) but it required the combined S2_S' mutant to abrogate nACE-selectivity. However, this was not observed with the non-domain-selective inhibitors enalaprilat and omapatrilat. High-resolution structures were determined for the minimally glycosylated nACE with the combined S2_S' mutations in complex with the ACE inhibitors 33RE (1.8 angstrom), omapatrilat (1.8 angstrom) and SG6 (1.7 angstrom). These confirmed that the affinities of the nACE-selective SG6, 33RE and ketoACE-13 are not only affected by direct interactions with the immediate environment of the binding site, but also by more distal residues. This study provides evidence for a more general mechanism of ACE inhibition involving synergistic effects of not only the S2, S1' and S2' subsites, but also residues involved in the sub-domain interface that effect the unique ways in which the two domains stabilize active site loops to favour inhibitor binding.
机译:血管紧张素转换酶(ACE)最为人知的是,其形成血管加压血管素II,其控制血压,但也通过各种肽基材的水解参与其他生理功能。酶含有两种催化结构域(NACE和CACE),其具有不同的ACE底物和抑制剂的亲和力。我们调查了NACE抑制剂骨干网是否含有独特的财产,使他们能够利用NACE的铰接。动力学分析表明,独特的NACE残基,在S2口袋和主要子区域周围的突变中突变到其C结构域对应物中,各自导致NACE特异性抑制剂的亲和力降低(SG6,33RE和酮段 - 13)但它需要组合的S2_S'突变体以消除NACE选择性。然而,没有用非域选择性抑制剂enalaprilat和Omapatrilat观察到这一点。测定高分辨率结构,用于将最小糖基化的NACE与组合的S2_S'突变与ACE抑制剂33RE(1.8埃),Omapatrilat(1.8埃)和SG6(1.7埃)的组合突变。这些证实,NACE选择性SG6,33RE和酮气囊-13的亲和力不仅受到结合位点的直接环境的直接相互作用的影响,而且还由更远侧残留物影响。本研究提供了一种涉及不仅S2,S1'和S2'子位的协同效应的更一般机制的证据,还提供了涉及S2,S1'和S2'底座的协同效应,而且还涉及子域界面中的残留物,其涉及两个域稳定活跃的独特方式网站环以支持抑制剂结合。

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  • 来源
    《The Biochemical Journal》 |2020年第7期|共19页
  • 作者单位

    Univ Bath Dept Biol &

    Biochem Bath BA2 7AY Avon England;

    Univ Cape Town Inst Infect Dis &

    Mol Med Dept Integrat Biomed Sci ZA-7925 Cape Town South Africa;

    Univ Cape Town Inst Infect Dis &

    Mol Med Dept Integrat Biomed Sci ZA-7925 Cape Town South Africa;

    Univ Bath Dept Biol &

    Biochem Bath BA2 7AY Avon England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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