How does (E)-2-(acetamidomethylene)succinate bind to its hydrolase? From the binding process to the final result.
The binding of (E)-2-(acetamidomethylene)succinate (E-2AMS) to E-2AMS hydrolase is crucial for biological function of the enzyme and the last step reaction of vitamin B(6) biological degradation. In the present study, several molecular simulation methods, including molecular docking, conventional mo...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2013-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC3538738?pdf=render |
id |
doaj-4715a7d100014317987a0bf67c0871bc |
---|---|
record_format |
Article |
spelling |
doaj-4715a7d100014317987a0bf67c0871bc2020-11-25T02:00:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0181e5381110.1371/journal.pone.0053811How does (E)-2-(acetamidomethylene)succinate bind to its hydrolase? From the binding process to the final result.Ji-Long ZhangQing-Chuan ZhengZheng-Qiang LiHong-Xing ZhangThe binding of (E)-2-(acetamidomethylene)succinate (E-2AMS) to E-2AMS hydrolase is crucial for biological function of the enzyme and the last step reaction of vitamin B(6) biological degradation. In the present study, several molecular simulation methods, including molecular docking, conventional molecular dynamics (MD), steered MD (SMD), and free energy calculation methods, were properly integrated to investigate the detailed binding process of E-2AMS to its hydrolase and to assign the optimal enzyme-substrate complex conformation. It was demonstrated that the substrate binding conformation with trans-form amide bond is energetically preferred conformation, in which E-2AMS's pose not only ensures hydrogen bond formation of its amide oxygen atom with the vicinal oxyanion hole but also provides probability of the hydrophobic interaction between its methyl moiety and the related enzyme's hydrophobic cavity. Several key residues, Arg146, Arg167, Tyr168, Arg179, and Tyr259, orientate the E-2AMS's pose and stabilize its conformation in the active site via the hydrogen bond interaction with E-2AMS. Sequentially, the binding process of E-2AMS to E-2AMS hydrolase was studied by SMD simulation, which shows the surprising conformational reversal of E-2AMS. Several important intermediate structures and some significant residues were identified in the simulation. It is stressed that Arg146 and Arg167 are two pivotal residues responsible for the conformational reversal of E-2AMS in the binding or unbinding. Our research has shed light onto the full binding process of the substrate to E-2AMS hydrolase, which could provide more penetrating insight into the interaction of E-2AMS with the enzyme and would help in the further exploration on the catalysis mechanism.http://europepmc.org/articles/PMC3538738?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ji-Long Zhang Qing-Chuan Zheng Zheng-Qiang Li Hong-Xing Zhang |
spellingShingle |
Ji-Long Zhang Qing-Chuan Zheng Zheng-Qiang Li Hong-Xing Zhang How does (E)-2-(acetamidomethylene)succinate bind to its hydrolase? From the binding process to the final result. PLoS ONE |
author_facet |
Ji-Long Zhang Qing-Chuan Zheng Zheng-Qiang Li Hong-Xing Zhang |
author_sort |
Ji-Long Zhang |
title |
How does (E)-2-(acetamidomethylene)succinate bind to its hydrolase? From the binding process to the final result. |
title_short |
How does (E)-2-(acetamidomethylene)succinate bind to its hydrolase? From the binding process to the final result. |
title_full |
How does (E)-2-(acetamidomethylene)succinate bind to its hydrolase? From the binding process to the final result. |
title_fullStr |
How does (E)-2-(acetamidomethylene)succinate bind to its hydrolase? From the binding process to the final result. |
title_full_unstemmed |
How does (E)-2-(acetamidomethylene)succinate bind to its hydrolase? From the binding process to the final result. |
title_sort |
how does (e)-2-(acetamidomethylene)succinate bind to its hydrolase? from the binding process to the final result. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2013-01-01 |
description |
The binding of (E)-2-(acetamidomethylene)succinate (E-2AMS) to E-2AMS hydrolase is crucial for biological function of the enzyme and the last step reaction of vitamin B(6) biological degradation. In the present study, several molecular simulation methods, including molecular docking, conventional molecular dynamics (MD), steered MD (SMD), and free energy calculation methods, were properly integrated to investigate the detailed binding process of E-2AMS to its hydrolase and to assign the optimal enzyme-substrate complex conformation. It was demonstrated that the substrate binding conformation with trans-form amide bond is energetically preferred conformation, in which E-2AMS's pose not only ensures hydrogen bond formation of its amide oxygen atom with the vicinal oxyanion hole but also provides probability of the hydrophobic interaction between its methyl moiety and the related enzyme's hydrophobic cavity. Several key residues, Arg146, Arg167, Tyr168, Arg179, and Tyr259, orientate the E-2AMS's pose and stabilize its conformation in the active site via the hydrogen bond interaction with E-2AMS. Sequentially, the binding process of E-2AMS to E-2AMS hydrolase was studied by SMD simulation, which shows the surprising conformational reversal of E-2AMS. Several important intermediate structures and some significant residues were identified in the simulation. It is stressed that Arg146 and Arg167 are two pivotal residues responsible for the conformational reversal of E-2AMS in the binding or unbinding. Our research has shed light onto the full binding process of the substrate to E-2AMS hydrolase, which could provide more penetrating insight into the interaction of E-2AMS with the enzyme and would help in the further exploration on the catalysis mechanism. |
url |
http://europepmc.org/articles/PMC3538738?pdf=render |
work_keys_str_mv |
AT jilongzhang howdoese2acetamidomethylenesuccinatebindtoitshydrolasefromthebindingprocesstothefinalresult AT qingchuanzheng howdoese2acetamidomethylenesuccinatebindtoitshydrolasefromthebindingprocesstothefinalresult AT zhengqiangli howdoese2acetamidomethylenesuccinatebindtoitshydrolasefromthebindingprocesstothefinalresult AT hongxingzhang howdoese2acetamidomethylenesuccinatebindtoitshydrolasefromthebindingprocesstothefinalresult |
_version_ |
1724961735258931200 |