Summary of ssbd-repos-000276

SSBD:database
URL

Name
ssbd-repos-000276 (276-Murai-CellularDyn)
URL
DOI
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Title
Time-course images of cellular dynamics of SMART mice stimulated responds to necroptosis.
Description
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Submited Date
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Release Date
2024-11-25
Updated Date
-
License
Funding information
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File formats
Data size
276.1 MB

Organism
Mus musculus
Strain
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Cell Line
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Genes
NA
Proteins
NA

GO Molecular Function (MF)
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GO Biological Process (BP)
necroptotic process, execution phase of necroptosis, apoptotic process, execution phase of apoptosis
GO Cellular Component (CC)
-
Study Type
NA
Imaging Methods
fluorescence microscopy, FRET

Method Summary
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Related paper(s)

Shin Murai, Kanako Takakura, Kenta Sumiyama, Kenta Moriwaki, Kenta Terai, Sachiko Komazawa-Sakon, Takao Seki, Yoshifumi Yamaguchi, Tetuo Mikami, Kimi Araki, Masaki Ohmuraya, Michiyuki Matsuda, Hiroyasu Nakano (2022) Generation of transgenic mice expressing a FRET biosensor, SMART, that responds to necroptosis., Communications biology, Volume 5, Number 1, pp. 1331

Published in 2022 Dec 5 (Electronic publication in Dec. 5, 2022, midnight )

(Abstract) Necroptosis is a regulated form of cell death involved in various pathological conditions, including ischemic reperfusion injuries, virus infections, and drug-induced tissue injuries. However, it is not fully understood when and where necroptosis occurs in vivo. We previously generated a Forster resonance energy transfer (FRET) biosensor, termed SMART (the sensor for MLKL activation by RIPK3 based on FRET), which monitors conformational changes of MLKL along with progression of necroptosis in human and murine cell lines in vitro. Here, we generate transgenic (Tg) mice that express the SMART biosensor in various tissues. The FRET ratio is increased in necroptosis, but not apoptosis or pyroptosis, in primary cells. Moreover, the FRET signals are elevated in renal tubular cells of cisplatin-treated SMART Tg mice compared to untreated SMART Tg mice. Together, SMART Tg mice may provide a valuable tool for monitoring necroptosis in different types of cells in vitro and in vivo.
(MeSH Terms)

Contact(s)
Hiroyasu Nakano
Organization(s)
Toho University School of Medicine , Department of Biochemistry
Image Data Contributors
Quantitative Data Contributors

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