Integration of Inhibition Kinetics and Molecular Dynamics Simulations: A Urea-Mediated Folding Study on Acetaldehyde Dehydrogenase 1

被引:0
|
作者
Yingying Xu
Jinhyuk Lee
Zhi-Rong Lü
Hang Mu
Qian Zhang
Yong-Doo Park
机构
[1] Yangtze Delta Region Institute of Tsinghua University,Zhejiang Provincial Key Laboratory of Applied Enzymology
[2] Beijing University of Chinese Medicine,School of Preclinical Medicine
[3] Korea Research Institute of Bioscience and Biotechnology,Korean Bioinformation Center (KOBIC)
[4] University of Sciences and Technology,Department of Nanobiotechnology and Bioinformatics
[5] College of Biological and Environmental Sciences,undefined
[6] Zhejiang Wanli University,undefined
来源
Applied Biochemistry and Biotechnology | 2016年 / 179卷
关键词
Acetaldehyde dehydrogenase 1; Urea; Inhibition; Kinetics; Molecular dynamics; Simulations;
D O I
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中图分类号
学科分类号
摘要
Understanding the mechanism of acetaldehyde dehydrogenase 1 (ALDH1) folding is important because this enzyme is directly involved in several types of cancers and other diseases. We investigated the urea-mediated unfolding of ALDH1 by integrating kinetic inhibition studies with computational molecular dynamics (MD) simulations. Conformational changes in the enzyme structure were also analyzed using intrinsic and 1-anilinonaphthalene-8-sulfonate (ANS)-binding fluorescence measurements. Kinetic studies revealed that the direct binding of urea to ALDH1 induces inactivation of ALDH1 in a manner of mixed-type inhibition. Tertiary structural changes associated with regional hydrophobic exposure of the active site were observed. The urea binding regions on ALDH1 were predicted by docking simulations and were partly shared with active site residues of ALDH1 and with interface residues of the oligomerization domain for tetramer formation. The docking results suggest that urea prevents formation of the ALDH1 normal shape for the tetramer state as well as entrance of the substrate into the active site. Our study provides insight into the structural changes that accompany urea-mediated unfolding of ALDH1 and the catalytic role associated with conformational changes.
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页码:1101 / 1114
页数:13
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