Summary of 380-Wang-ActininTensionSensor

SSBD:database
SSBD:database URL
Title
Changes of tension in smooth muscle cell after treatment with water, calyculin A, or Y27632
Description
-
Relase date
2024-12-14
Updated date
-
License
CC BY
Kind
Image data based on Experiment
Number of Datasets
3 ( Image datasets: 3, Quantitative data datasets: 0 )
Size of Datasets
3.4 GB ( Image datasets: 3.4 GB, Quantitative data datasets: 0 bytes )

Organism(s)
Mus musculus
Strain(s)
R26R-S2 (Accession No. CDB0055E)

Datatype
-
Molecular Function (MF)
Biological Process (BP)
response to osmotic stress, response to chemical
Cellular Component (CC)
cytoskeleton
Biological Imaging Method
FRET, confocal microscopy, time lapse microscopy
X scale
0.264 micrometer/pixel
Y scale
0.264 micrometer/pixel
Z scale
0.5 micrometer/slice
T scale
1 minutes per time interval, 0.5 minutes per time interval

Image Acquisition
Experiment type
-
Microscope type
-
Acquisition mode
-
Contrast method
-
Microscope model
-
Detector model
-
Objective model
-
Filter set
-

Related paper(s)

Junfeng Wang, Eijiro Maeda, Yuki Tsujimura, Takaya Abe, Hiroshi Kiyonari, Tetsuya Kitaguchi, Hideo Yokota, Takeo Matsumoto (2023) In situ FRET measurement of cellular tension using conventional confocal laser microscopy in newly established reporter mice expressing actinin tension sensor., Scientific reports, Volume 13, Number 1, pp. 22729

Published in 2023 Dec 20 (Electronic publication in Dec. 20, 2023, midnight )

(Abstract) FRET-based sensors are utilized for real-time measurements of cellular tension. However, transfection of the sensor gene shows low efficacy and is only effective for a short period. Reporter mice expressing such sensors have been developed, but sensor fluorescence has not been measured successfully using conventional confocal microscopy. Therefore, methods for spatiotemporal measurement of cellular tension in vivo or ex vivo are still limited. We established a reporter mouse line expressing FRET-based actinin tension sensors consisting of EGFP as the donor and mCherry as the acceptor and whose FRET ratio change is observable with confocal microscopy. Tension-induced changes in FRET signals were monitored in the aorta and tail tendon fascicles, as well as aortic smooth muscle cells isolated from these mice. The pattern of FRET changes was distinctive, depending on tissue type. Indeed, aortic smooth muscle cells exhibit different sensitivity to macroscopic tensile strain in situ and in an isolated state. This mouse strain will enable novel types of biomechanical investigations of cell functions in important physiological events.
(MeSH Terms)

Contact
Takeo Matsumoto , Nagoya University , Biomechanics Laboratory, Department of Mechanical Systems Engineering, Graduate School of Engineering , Biomechanics Laboratory, Department of Mechanical Systems Engineering, Graduate School of Engineering
Contributors
Junfeng Wang, Yuki Tsujimura, Takaya Abe, Hiroshi Kiyonari, Tetsuya Kitaguchi


Dataset List of 380-Wang-ActininTensionSensor

#
Dataset ID
Kind
Size
4D View
SSBD:OMERO
Download BDML
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# 11826
Dataset Kind Image data
Dataset Size 1.9 GB
4D view
SSBD:OMERO
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# 11827
Dataset Kind Image data
Dataset Size 631.0 MB
4D view
SSBD:OMERO
Download BDML
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# 11828
Dataset Kind Image data
Dataset Size 897.4 MB
4D view
SSBD:OMERO
Download BDML
Download Image data