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首页> 外文期刊>Biochemical and Biophysical Research Communications >Crystal structure analysis of ornithine transcarbamylase from Thermus thermophilus-HB8 provides insights on the plasticity of the active site
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Crystal structure analysis of ornithine transcarbamylase from Thermus thermophilus-HB8 provides insights on the plasticity of the active site

机译:嗜热栖热菌HB8中鸟氨酸转氨甲酰酶的晶体结构分析提供了有关活性位点可塑性的见解

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摘要

The enzymatic biosynthesis of L-arginine involves complex, sequential action of many enzymes and ornithine transcarbamylase (OTCase) is one of the essential enzymes in the pathway. In mammals OTCase is part of the urea cycle. Arginine is used in a variety of pharmaceutical and industrial applications and therefore engineering arginine biosynthesis pathway for overproduction of arginine has gained importance. On the other hand, it was found that detrimental mutations in the human OTCase gene resulted clinical hyperammonemia, with subsequent neurological damage. Therefore a better understanding of the structure function relationship of this enzyme from various sources could be useful for modifying its enzymatic action. Here we report the structure of ornithine transcarbamylase of Thermus therrnophilus HB8 (aTtOTCase) at 2.0 angstrom resolution. On comparison with its homologs, aTtOTCase showed maximum variation at the substrate binding loops namely 80s and SMG/240s loops. The active site geometry of aTtOTCase is unique among its homologs where the side chain of certain residues (Leu57, Arg58 and Arg288) is oriented differently. To study the structural insights of substrate binding in aTtOTCase, docking of carbamoyl phosphate (CP) and ornithine (Orn) was carried out sequentially. Both substrates were unable to bind in a proper orientation in the active site pocket and this could be due to the differently oriented side chains. This suggests that the active site geometry should also undergo fine tuning besides the large structural changes as the enzyme switches from completely open to a substrate bound closed state. (C) 2015 Elsevier Inc. All rights reserved.
机译:L-精氨酸的酶促生物合成涉及许多酶的复杂顺序作用,而鸟氨酸转氨甲酰酶(OTCase)是该途径中必不可少的酶之一。在哺乳动物中,OTCase是尿素循环的一部分。精氨酸被用于多种药物和工业应用中,因此用于精氨酸过量生产的工程精氨酸生物合成途径变得越来越重要。另一方面,发现人OTCase基因中的有害突变导致临床高氨血症,并随后造成神经系统损害。因此,更好地了解来自各种来源的该酶的结构功能关系可能有助于修饰其酶促作用。在这里,我们报告了Thermus therrnophilus HB8(aTtOTCase)鸟氨酸转氨酶的结构,分辨率为2.0埃。与它的同源物比较,aTtOTCase在底物结合环即80s和SMG / 240s环处显示最大的变化。 aTtOTCase的活性位点几何结构在其同源物中是独特的,其中某些残基(Leu57,Arg58和Arg288)的侧链的取向不同。为了研究aTtOTCase中底物结合的结构见解,依次进行了氨基甲酰基磷酸酯(CP)和鸟氨酸(Orn)的对接。两种底物均不能以适当的方向结合在活性位点袋中,这可能是由于侧链的取向不同所致。这表明,随着酶从完全打开转变为与底物结合的闭合状态,活性位点的几何形状除了应进行大的结构变化外,还应进行微调。 (C)2015 Elsevier Inc.保留所有权利。

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