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N- vs. C-Domain Selectivity of Catalytic Inactivation of Human Angiotensin Converting Enzyme by Lisinopril-Coupled Transition Metal Chelates

机译:Lisinopril偶联的过渡金属螯合物催化灭活人血管紧张素转化酶的N-v.C域选择性

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摘要

The N- and C-terminal domains of human somatic Angiotensin I Converting Enzyme (sACE-1) demonstrate distinct physiological functions, with resulting interest in the development of domain-selective inhibitors for specific therapeutic applications. Herein, the activity of lisinopril-coupled transition metal chelates were tested for both reversible binding and irreversible catalytic inactivation of sACE-1. C/N domain binding selectivity ratios ranged from 1 to 350, while rates of irreversible catalytic inactivation of the N- and C-domains were found to be significantly greater for the N-domain, suggesting a more optimal orientation of the M-chelate-lisinopril complexes within the active site of the N-domain of sACE-1. Finally, the combined effect of binding selectivity and inactivation selectivity was assessed for each catalyst (double-filter selectivity factors), and several catalysts were found to cause domain-selective catalytic inactivation. The results of this study demonstrate the ability to optimize the target selectivity of catalytic metallopeptides through both binding and orientation factors (double-filter effect).
机译:人体血管紧张素I转化酶(sACE-1)的N-和C-末端结构域表现出独特的生理功能,从而引起对针对特定治疗应用的结构域选择性抑制剂的开发的兴趣。在本文中,测试了赖诺普利偶联的过渡金属螯合物对于sACE-1的可逆结合和不可逆催化失活的活性。 C / N域结合选择性比介于1至350之间,而N域和C域的不可逆催化失活速率被发现对于N域而言明显更大,这表明M-螯合物的最佳取向sACE-1 N域活性位点内的赖诺普利复合物。最后,评估了每种催化剂的结合选择性和失活选择性的综合效果(双重过滤器选择性因子),发现几种催化剂可导致结构域选择性催化失活。这项研究的结果证明了能够通过结合和取向因子(双重过滤效应)优化催化金属肽的目标选择性的能力。

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