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A Modern Understanding of the Traditional and Nontraditional Biological Functions of Angiotensin-Converting Enzyme

机译:对血管紧张素转化酶传统和非传统生物学功能的现代理解

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摘要

Angiotensin-converting enzyme (ACE) is a zinc-dependent peptidase responsible for converting angiotensin I into the vasoconstrictor angiotensin II. However, ACE is a relatively nonspecific peptidase that is capable of cleaving a wide range of substrates. Because of this, ACE and its peptide substrates and products affect many physiologic processes, including blood pressure control, hematopoiesis, reproduction, renal development, renal function, and the immune response. The defining feature of ACE is that it is composed of two homologous and independently catalytic domains, the result of an ancient gene duplication, and ACE-like genes are widely distributed in nature. The two ACE catalytic domains contribute to the wide substrate diversity of ACE and, by extension, the physiologic impact of the enzyme. Several studies suggest that the two catalytic domains have different biologic functions. Recently, the X-ray crystal structure of ACE has elucidated some of the structural differences between the two ACE domains. This is important now that ACE domain-specific inhibitors have been synthesized and characterized. Once widely available, these reagents will undoubtedly be powerful tools for probing the physiologic actions of each ACE domain. In turn, this knowledge should allow clinicians to envision new therapies for diseases not currently treated with ACE inhibitors.
机译:血管紧张素转化酶(ACE)是锌依赖性肽酶,负责将血管紧张素I转化为血管收缩剂血管紧张素II。但是,ACE是一种相对非特异性的肽酶,能够裂解多种底物。因此,ACE及其肽的底物和产物会影响许多生理过程,包括血压控制,造血作用,繁殖,肾脏发育,肾功能和免疫反应。 ACE的主要特征是它由两个同源且独立的催化域组成,这是古老基因复制的结果,而ACE样基因在自然界中分布广泛。这两个ACE催化结构域有助于ACE的广泛底物多样性,并扩展了该酶的生理影响。多项研究表明,两个催化域具有不同的生物学功能。最近,ACE的X射线晶体结构阐明了两个ACE域之间的某些结构差异。现在,已经合成并表征了ACE域特异性抑制剂,这一点很重要。一旦广泛可用,这些试剂无疑将成为探测每个ACE域的生理作用的有力工具。反过来,这种知识应使临床医生可以设想出新的疗法,以治疗目前尚未使用ACE抑制剂治疗的疾病。

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