Functional reconstitution of Staphylococcus aureus truncated AgrC histidine kinase in a model membrane system.

The integral membrane protein AgrC is a histidine kinase whose sensor domains interact with an autoinducing peptide, resulting in a series of downstream responses. In this study, truncated AgrCTM5-6C and AgrCTM5-6C-GFP with GFP as a reporter gene were produced using a bacterial system. Purified AgrC...

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Main Authors: Lina Wang, Chunshan Quan, Baoquan Liu, Jianfeng Wang, Wen Xiong, Pengchao Zhao, Shengdi Fan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3841183?pdf=render
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spelling doaj-673bfeae0bdc4f8f97608aef9ff7534f2020-11-25T02:23:04ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01811e8040010.1371/journal.pone.0080400Functional reconstitution of Staphylococcus aureus truncated AgrC histidine kinase in a model membrane system.Lina WangChunshan QuanBaoquan LiuJianfeng WangWen XiongPengchao ZhaoShengdi FanThe integral membrane protein AgrC is a histidine kinase whose sensor domains interact with an autoinducing peptide, resulting in a series of downstream responses. In this study, truncated AgrCTM5-6C and AgrCTM5-6C-GFP with GFP as a reporter gene were produced using a bacterial system. Purified AgrCTM5-6C and AgrCTM5-6C-GFP were reconstituted into liposomes by a detergent-mediated method. To achieve high-yield protein incorporation, we investigated the effect of different detergents on protein reconstitution efficiency. The highest incorporation was found with N,N-dimethyldode-cylamine N-oxide during complete liposome solubilization, which resulted in a yield of 85±5%. The COOH-terminus of the protein AgrCTM5-6C was almost exclusively oriented towards the inside of the vesicles. AgrCTM5-6C in proteoliposomes exhibited approximately a 6-fold increase in constitutive activity compared with AgrCTM5-6C in detergent micelles. The reconstitution of AgrCTM5-6C or AgrCTM5-6C-GFP was characterized using dynamic light scattering, fluorescence microscopy, and transmission electron microscopy. Based on the results, the optimal conditions for protein incorporation were defined. These findings contribute to the study of membrane protein structure and function in vitro using a reconstitution system.http://europepmc.org/articles/PMC3841183?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Lina Wang
Chunshan Quan
Baoquan Liu
Jianfeng Wang
Wen Xiong
Pengchao Zhao
Shengdi Fan
spellingShingle Lina Wang
Chunshan Quan
Baoquan Liu
Jianfeng Wang
Wen Xiong
Pengchao Zhao
Shengdi Fan
Functional reconstitution of Staphylococcus aureus truncated AgrC histidine kinase in a model membrane system.
PLoS ONE
author_facet Lina Wang
Chunshan Quan
Baoquan Liu
Jianfeng Wang
Wen Xiong
Pengchao Zhao
Shengdi Fan
author_sort Lina Wang
title Functional reconstitution of Staphylococcus aureus truncated AgrC histidine kinase in a model membrane system.
title_short Functional reconstitution of Staphylococcus aureus truncated AgrC histidine kinase in a model membrane system.
title_full Functional reconstitution of Staphylococcus aureus truncated AgrC histidine kinase in a model membrane system.
title_fullStr Functional reconstitution of Staphylococcus aureus truncated AgrC histidine kinase in a model membrane system.
title_full_unstemmed Functional reconstitution of Staphylococcus aureus truncated AgrC histidine kinase in a model membrane system.
title_sort functional reconstitution of staphylococcus aureus truncated agrc histidine kinase in a model membrane system.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description The integral membrane protein AgrC is a histidine kinase whose sensor domains interact with an autoinducing peptide, resulting in a series of downstream responses. In this study, truncated AgrCTM5-6C and AgrCTM5-6C-GFP with GFP as a reporter gene were produced using a bacterial system. Purified AgrCTM5-6C and AgrCTM5-6C-GFP were reconstituted into liposomes by a detergent-mediated method. To achieve high-yield protein incorporation, we investigated the effect of different detergents on protein reconstitution efficiency. The highest incorporation was found with N,N-dimethyldode-cylamine N-oxide during complete liposome solubilization, which resulted in a yield of 85±5%. The COOH-terminus of the protein AgrCTM5-6C was almost exclusively oriented towards the inside of the vesicles. AgrCTM5-6C in proteoliposomes exhibited approximately a 6-fold increase in constitutive activity compared with AgrCTM5-6C in detergent micelles. The reconstitution of AgrCTM5-6C or AgrCTM5-6C-GFP was characterized using dynamic light scattering, fluorescence microscopy, and transmission electron microscopy. Based on the results, the optimal conditions for protein incorporation were defined. These findings contribute to the study of membrane protein structure and function in vitro using a reconstitution system.
url http://europepmc.org/articles/PMC3841183?pdf=render
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