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首页> 外文期刊>Current topics in medicinal chemistry >Structural features of angiotensin-I converting enzyme catalytic sites: conformational studies in solution, homology models and comparison with other zinc metallopeptidases.
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Structural features of angiotensin-I converting enzyme catalytic sites: conformational studies in solution, homology models and comparison with other zinc metallopeptidases.

机译:血管紧张素-I转换酶催化位点的结构特征:溶液中的构象研究,同源性模型以及与其他锌金属肽酶的比较。

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Angiotensin-I Converting Enzyme (ACE) is a Zinc Metallopeptidase of which the three-dimensional structure was unknown until recently, when the X-ray structure of testis isoform (C-terminal domain of somatic) was determined. ACE plays an important role in the regulation of blood pressure due to its action in the frame of the Renin-Angiotensin System. Efforts for the specific inhibition of the catalytic function of this enzyme have been made on the basis of the X-ray structures of other enzymes with analogous efficacy in the hydrolytic cleavage of peptide substrate terminal fragments. Angiotensin-I Converting Enzyme bears the sequence and topology characteristics of the well-known gluzincins, a sub-family of zincins metallopeptidases and these similarities are exploited in order to reveal common structural elements among these enzymes. 3D homology models are also built using the X-ray structure of Thermolysin as template and peptide models that represent the amino acid sequence of the ACE's two catalytic, zinc-containing sites are designed and synthesized. Conformational analysis of the zinc-free and zinc-bound peptides through high resolution 1H NMR Spectroscopy provides new insights into the solution structure of ACE catalytic centers. Structural properties of these peptides could provide valuable information towards the design and preparation of new potent ACE inhibitors.
机译:血管紧张素-I转换酶(ACE)是一种锌金属肽酶,其三维结构直到最近才确定睾丸亚型的X射线结构(体细胞的C端结构域)。由于ACE在肾素-血管紧张素系统的框架中起作用,因此在血压调节中起着重要作用。基于其他酶的X-射线结构,已经做出了特异性抑制该酶的催化作用的努力,在肽底物末端片段的水解裂解中具有类似的功效。血管紧张素-I转换酶具有众所周知的gluzincins的序列和拓扑特征,它是锌蛋白金属肽酶的一个子家族,利用这些相似性来揭示这些酶之间的共同结构要素。还使用Thermosysin的X射线结构作为模板来构建3D同源性模型,并设计并合成了代表ACE的两个含锌催化位点的氨基酸序列的肽模型。通过高分辨率1H NMR光谱对无锌肽和与锌结合的肽进行构象分析,为ACE催化中心的溶液结构提供了新见解。这些肽的结构特性可以为设计和制备新型强效ACE抑制剂提供有价值的信息。

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