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A RhoA-FRET Biosensor Mouse for Intravital Imaging in Normal Tissue Homeostasis and Disease Contexts

Authors :
Nobis, Max
Herrmann, David
Warren, Sean C.
Kadir, Shereen
Leung, Wilfred
Killen, Monica
Magenau, Astrid
Stevenson, David
Lucas, Morghan C.
Reischmann, Nadine
Vennin, Claire
Conway, James R.W.
Boulghourjian, Alice
Zaratzian, Anaiis
Law, Andrew M.
Gallego-Ortega, David
Ormandy, Christopher J.
Walters, Stacey N.
Grey, Shane T.
Bailey, Jacqueline
Chtanova, Tatyana
Quinn, Julian M.W.
Baldock, Paul A.
Croucher, Peter I.
Schwarz, Juliane P.
Mrowinska, Agata
Zhang, Lei
Herzog, Herbert
Masedunskas, Andrius
Hardeman, Edna C.
Gunning, Peter W.
del Monte-Nieto, Gonzalo
Harvey, Richard P.
Samuel, Michael S.
Pajic, Marina
McGhee, Ewan J.
Johnsson, Anna-Karin E.
Sansom, Owen J.
Welch, Heidi C.E.
Morton, Jennifer P.
Strathdee, Douglas
Anderson, Kurt I.
Timpson, Paul
Source :
Cell Reports; October 2017, Vol. 21 Issue: 1 p274-288, 15p
Publication Year :
2017

Abstract

The small GTPase RhoA is involved in a variety of fundamental processes in normal tissue. Spatiotemporal control of RhoA is thought to govern mechanosensing, growth, and motility of cells, while its deregulation is associated with disease development. Here, we describe the generation of a RhoA-fluorescence resonance energy transfer (FRET) biosensor mouse and its utility for monitoring real-time activity of RhoA in a variety of native tissues in vivo. We assess changes in RhoA activity during mechanosensing of osteocytes within the bone and during neutrophil migration. We also demonstrate spatiotemporal order of RhoA activity within crypt cells of the small intestine and during different stages of mammary gestation. Subsequently, we reveal co-option of RhoA activity in both invasive breast and pancreatic cancers, and we assess drug targeting in these disease settings, illustrating the potential for utilizing this mouse to study RhoA activity in vivo in real time.

Details

Language :
English
ISSN :
22111247
Volume :
21
Issue :
1
Database :
Supplemental Index
Journal :
Cell Reports
Publication Type :
Periodical
Accession number :
ejs43376593
Full Text :
https://doi.org/10.1016/j.celrep.2017.09.022