Structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.

In the biosynthesis of polyketides, ketoreductases (KRs) are an important group of enzymes that determine the chiralities of the carbon backbones. SiaM is a special member of this group that can recognize substrates with different lengths and can be used iteratively. Here we report the crystal struc...

Full description

Bibliographic Details
Main Authors: Hua Wang, Huaidong Zhang, Yi Zou, Yanling Mi, Shuangjun Lin, Zhixiong Xie, Yunjun Yan, Houjin Zhang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4046962?pdf=render
id doaj-ae1b7eec9e3542e2aeeae3b16edbeea4
record_format Article
spelling doaj-ae1b7eec9e3542e2aeeae3b16edbeea42020-11-24T21:33:39ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0196e9799610.1371/journal.pone.0097996Structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.Hua WangHuaidong ZhangYi ZouYanling MiShuangjun LinZhixiong XieYunjun YanHoujin ZhangIn the biosynthesis of polyketides, ketoreductases (KRs) are an important group of enzymes that determine the chiralities of the carbon backbones. SiaM is a special member of this group that can recognize substrates with different lengths and can be used iteratively. Here we report the crystal structure of SiaM. Structural analysis indicates that the overall structure resembles those of other KRs. However, significant disparity can be found in the conserved LDD motif that is replaced with IRD motif in SiaM. The isoleucine and aspartic acid residues take similar orientations as leucine and aspartic acid in the conserved LDD motif, while the arginine residue points out towards the solvent. PISA analysis shows that SiaM forms a tetramer. Several aromatic residues are found in the interfaces, which have aromatic stacking interactions with the aromatic residues in the neighboring protomers. Mutagenesis studies performed on the aromatic residues show that these sites are important for maintaining the structural integrity of SiaM. However, the aromatic residues contribute differently to the enzymatic activity. In the N-terminal interface, the aromatic residues can be replaced with leucine without affecting the enzymatic activity while, in the other interface, such mutations abolish the enzymatic activity.http://europepmc.org/articles/PMC4046962?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hua Wang
Huaidong Zhang
Yi Zou
Yanling Mi
Shuangjun Lin
Zhixiong Xie
Yunjun Yan
Houjin Zhang
spellingShingle Hua Wang
Huaidong Zhang
Yi Zou
Yanling Mi
Shuangjun Lin
Zhixiong Xie
Yunjun Yan
Houjin Zhang
Structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.
PLoS ONE
author_facet Hua Wang
Huaidong Zhang
Yi Zou
Yanling Mi
Shuangjun Lin
Zhixiong Xie
Yunjun Yan
Houjin Zhang
author_sort Hua Wang
title Structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.
title_short Structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.
title_full Structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.
title_fullStr Structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.
title_full_unstemmed Structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.
title_sort structural insight into the tetramerization of an iterative ketoreductase siam through aromatic residues in the interfaces.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description In the biosynthesis of polyketides, ketoreductases (KRs) are an important group of enzymes that determine the chiralities of the carbon backbones. SiaM is a special member of this group that can recognize substrates with different lengths and can be used iteratively. Here we report the crystal structure of SiaM. Structural analysis indicates that the overall structure resembles those of other KRs. However, significant disparity can be found in the conserved LDD motif that is replaced with IRD motif in SiaM. The isoleucine and aspartic acid residues take similar orientations as leucine and aspartic acid in the conserved LDD motif, while the arginine residue points out towards the solvent. PISA analysis shows that SiaM forms a tetramer. Several aromatic residues are found in the interfaces, which have aromatic stacking interactions with the aromatic residues in the neighboring protomers. Mutagenesis studies performed on the aromatic residues show that these sites are important for maintaining the structural integrity of SiaM. However, the aromatic residues contribute differently to the enzymatic activity. In the N-terminal interface, the aromatic residues can be replaced with leucine without affecting the enzymatic activity while, in the other interface, such mutations abolish the enzymatic activity.
url http://europepmc.org/articles/PMC4046962?pdf=render
work_keys_str_mv AT huawang structuralinsightintothetetramerizationofaniterativeketoreductasesiamthrougharomaticresiduesintheinterfaces
AT huaidongzhang structuralinsightintothetetramerizationofaniterativeketoreductasesiamthrougharomaticresiduesintheinterfaces
AT yizou structuralinsightintothetetramerizationofaniterativeketoreductasesiamthrougharomaticresiduesintheinterfaces
AT yanlingmi structuralinsightintothetetramerizationofaniterativeketoreductasesiamthrougharomaticresiduesintheinterfaces
AT shuangjunlin structuralinsightintothetetramerizationofaniterativeketoreductasesiamthrougharomaticresiduesintheinterfaces
AT zhixiongxie structuralinsightintothetetramerizationofaniterativeketoreductasesiamthrougharomaticresiduesintheinterfaces
AT yunjunyan structuralinsightintothetetramerizationofaniterativeketoreductasesiamthrougharomaticresiduesintheinterfaces
AT houjinzhang structuralinsightintothetetramerizationofaniterativeketoreductasesiamthrougharomaticresiduesintheinterfaces
_version_ 1725952845716389888