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Human Oxygenase Variants Employing a Single Protein Fe-II Ligand Are Catalytically Active

机译:使用单一蛋白质Fe-II配体的人氧酶变体是催化活性的

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摘要

Aspartate/asparagine-beta-hydroxylase (AspH) is a human 2-oxoglutarate (2OG) and Fe-II oxygenase that catalyses C3 hydroxylations of aspartate/asparagine residues of epidermal growth factor-like domains (EGFDs). Unusually, AspH employs two histidine residues to chelate FeII rather than the typical triad of two histidine and one glutamate/aspartate residue. We report kinetic, inhibition, and crystallographic studies concerning human AspH variants in which either of its Fe-II binding histidine residues are substituted for alanine. Both the H725A and, in particular, the H679A AspH variants retain substantial catalytic activity. Crystal structures clearly reveal metal-ligation by only a single protein histidine ligand. The results have implications for the functional assignment of 2OG oxygenases and for the design of non-protein biomimetic catalysts.
机译:天门冬氨酸/天冬酰胺β羟化酶(AspH)是一种人类2-氧戊二酸(2OG)和铁II加氧酶,催化表皮生长因子样结构域(EGFD)天门冬氨酸/天冬酰胺残基的C3羟化。不同寻常的是,AspH使用两个组氨酸残基来螯合FeII,而不是两个组氨酸和一个谷氨酸/天冬氨酸残基的典型三元组。我们报告了关于人类ASP变体的动力学、抑制和结晶学研究,其中其Fe II结合组氨酸残基被丙氨酸取代。H725A,尤其是H679A AspH变体都保持了相当高的催化活性。晶体结构清楚地表明,金属连接仅由一个单一的蛋白质组氨酸配体。研究结果对2OG加氧酶的功能分配和非蛋白质仿生催化剂的设计具有指导意义。

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