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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Proteolytic activity of Co(III) complex of 1-oxa-4,7,10-triazacyclododecane: a new catalytic center for peptide-cleavage agents
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Proteolytic activity of Co(III) complex of 1-oxa-4,7,10-triazacyclododecane: a new catalytic center for peptide-cleavage agents

机译:1-oxa-4,7,10-三氮杂环十二烷的Co(III)配合物的蛋白水解活性:肽裂解剂的新催化中心

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Catalytic drugs based on target-selective artificial proteases have been proposed as a new paradigm in drug design. Peptide-cleavage agents selective for pathogenic proteins of Alzheimer's disease, type 2 diabetes mellitus or Parkinson's disease have been prepared using the Co(III) aqua complex (Co(III)cyclen) of 1,4,7,10-tetraazacyclododecane as the catalytic center. In the present study, the Co(III) aqua complex (Co(III)oxacyclen) of 1-oxa-4,7,10-triazacyclododecane was examined in search of an improved catalytic center for peptide-cleavage agents. An X-ray crystallographic study of [Co(oxacyclen)(CO3)](ClO4), titration of Co(III)oxacyclen, and kinetic studies on the cleavage of albumin, gamma-globulin, lysozyme, and myoglobin by Co(III)oxacyclen were carried out. Considerably higher proteolytic activity was observed for Co(III)oxacyclen in comparison with Co(III)cyclen, indicating that better target-selective artificial metalloproteases would be obtained using Co(III)oxacyclen as the catalytic center. The improved proteolytic activity was attributed to either steric effects or the increased Lewis acidity of the Co(III) center. The kinetic data also predicted that side effects due to the cleavage of nontarget proteins by a catalytic drug based on Co(III)oxacyclen would be insignificant.
机译:已经提出基于靶标选择性人工蛋白酶的催化药物作为药物设计中的新范例。使用1,4,7,10-四氮杂环十二烷的Co(III)水络合物(Co(​​III)cycln)制备了对阿尔茨海默氏病,2型糖尿病或帕金森氏病致病蛋白具有选择性的肽裂解剂中央。在本研究中,研究了1-oxa-4,7,10-三氮杂环十二烷的Co(III)水络合物(Co(​​III)oxacycln),以寻找肽裂解剂的改进催化中心。 [Co(oxacyclen)(CO3)](ClO4)的X射线晶体学研究,Co(III)oxacycln的滴定以及对Co(III)裂解白蛋白,γ-球蛋白,溶菌酶和肌红蛋白的动力学研究进行奥沙环素。与Co(III)环素相比,Co(III)环氧化物的蛋白水解活性高得多,这表明使用Co(III)环氧化物作为催化中心可获得更好的目标选择性人工金属蛋白酶。蛋白水解活性的提高归因于空间效应或Co(III)中心路易斯酸度的增加。动力学数据还预测由于基于Co(III)恶环素的催化药物裂解非靶标蛋白而引起的副作用将微不足道。

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