Cargando…

A Membrane-Bound Biosensor Visualizes Shear Stress-Induced Inhomogeneous Alteration of Cell Membrane Tension

Cell membrane is the first medium from where a cell senses and responds to external stress stimuli. Exploring the tension changes in cell membrane will help us to understand intracellular force transmission. Here, a biosensor (named MSS) based on fluorescence resonance energy transfer is developed t...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Wang, Yu, Xinlei, Xie, Fei, Zhang, Baohong, Shao, Shuai, Geng, Chunyang, Aziz, Aziz ur Rehman, Liao, Xiaoling, Liu, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6153118/
https://www.ncbi.nlm.nih.gov/pubmed/30267679
http://dx.doi.org/10.1016/j.isci.2018.09.002
_version_ 1783357461488467968
author Li, Wang
Yu, Xinlei
Xie, Fei
Zhang, Baohong
Shao, Shuai
Geng, Chunyang
Aziz, Aziz ur Rehman
Liao, Xiaoling
Liu, Bo
author_facet Li, Wang
Yu, Xinlei
Xie, Fei
Zhang, Baohong
Shao, Shuai
Geng, Chunyang
Aziz, Aziz ur Rehman
Liao, Xiaoling
Liu, Bo
author_sort Li, Wang
collection PubMed
description Cell membrane is the first medium from where a cell senses and responds to external stress stimuli. Exploring the tension changes in cell membrane will help us to understand intracellular force transmission. Here, a biosensor (named MSS) based on fluorescence resonance energy transfer is developed to visualize cell membrane tension. Validity of the biosensor is first verified for the detection of cell membrane tension. Results show a shear stress-induced heterogeneous distribution of membrane tension with the biosensor, which is strengthened by the disruption of microfilaments or enhancement of membrane fluidity, but weakened by the reduction of membrane fluidity or disruption of microtubules. These findings suggest that the MSS biosensor is a beneficial tool to visualize the changes and distribution of cell membrane tension. Besides, cell membrane tension does not display obvious polar distribution, indicating that cellular polarity changes do not first occur on the cell membrane during mechanical transmission.
format Online
Article
Text
id pubmed-6153118
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-61531182018-09-25 A Membrane-Bound Biosensor Visualizes Shear Stress-Induced Inhomogeneous Alteration of Cell Membrane Tension Li, Wang Yu, Xinlei Xie, Fei Zhang, Baohong Shao, Shuai Geng, Chunyang Aziz, Aziz ur Rehman Liao, Xiaoling Liu, Bo iScience Article Cell membrane is the first medium from where a cell senses and responds to external stress stimuli. Exploring the tension changes in cell membrane will help us to understand intracellular force transmission. Here, a biosensor (named MSS) based on fluorescence resonance energy transfer is developed to visualize cell membrane tension. Validity of the biosensor is first verified for the detection of cell membrane tension. Results show a shear stress-induced heterogeneous distribution of membrane tension with the biosensor, which is strengthened by the disruption of microfilaments or enhancement of membrane fluidity, but weakened by the reduction of membrane fluidity or disruption of microtubules. These findings suggest that the MSS biosensor is a beneficial tool to visualize the changes and distribution of cell membrane tension. Besides, cell membrane tension does not display obvious polar distribution, indicating that cellular polarity changes do not first occur on the cell membrane during mechanical transmission. Elsevier 2018-09-08 /pmc/articles/PMC6153118/ /pubmed/30267679 http://dx.doi.org/10.1016/j.isci.2018.09.002 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Li, Wang
Yu, Xinlei
Xie, Fei
Zhang, Baohong
Shao, Shuai
Geng, Chunyang
Aziz, Aziz ur Rehman
Liao, Xiaoling
Liu, Bo
A Membrane-Bound Biosensor Visualizes Shear Stress-Induced Inhomogeneous Alteration of Cell Membrane Tension
title A Membrane-Bound Biosensor Visualizes Shear Stress-Induced Inhomogeneous Alteration of Cell Membrane Tension
title_full A Membrane-Bound Biosensor Visualizes Shear Stress-Induced Inhomogeneous Alteration of Cell Membrane Tension
title_fullStr A Membrane-Bound Biosensor Visualizes Shear Stress-Induced Inhomogeneous Alteration of Cell Membrane Tension
title_full_unstemmed A Membrane-Bound Biosensor Visualizes Shear Stress-Induced Inhomogeneous Alteration of Cell Membrane Tension
title_short A Membrane-Bound Biosensor Visualizes Shear Stress-Induced Inhomogeneous Alteration of Cell Membrane Tension
title_sort membrane-bound biosensor visualizes shear stress-induced inhomogeneous alteration of cell membrane tension
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6153118/
https://www.ncbi.nlm.nih.gov/pubmed/30267679
http://dx.doi.org/10.1016/j.isci.2018.09.002
work_keys_str_mv AT liwang amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT yuxinlei amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT xiefei amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT zhangbaohong amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT shaoshuai amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT gengchunyang amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT azizazizurrehman amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT liaoxiaoling amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT liubo amembraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT liwang membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT yuxinlei membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT xiefei membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT zhangbaohong membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT shaoshuai membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT gengchunyang membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT azizazizurrehman membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT liaoxiaoling membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension
AT liubo membraneboundbiosensorvisualizesshearstressinducedinhomogeneousalterationofcellmembranetension