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Generation and Comparative Analysis of an Itga8-CreER T2 Mouse with Preferential Activity in Vascular Smooth Muscle Cells.

Authors :
Warthi G
Faulkner JL
Doja J
Ghanam AR
Gao P
Yang AC
Slivano OJ
Barris CT
Kress TC
Zawieja SD
Griffin SH
Xie X
Ashworth A
Christie CK
Bryant WB
Kumar A
Davis MJ
Long X
Gan L
Belin de Chantemele EJ
Lyu Q
Miano JM
Source :
Nature cardiovascular research [Nat Cardiovasc Res] 2022 Nov; Vol. 1 (11), pp. 1084-1100. Date of Electronic Publication: 2022 Nov 11.
Publication Year :
2022

Abstract

All current smooth muscle cell (SMC) Cre mice similarly recombine floxed alleles in vascular and visceral SMCs. Here, we present an Itga8-CreER <superscript> T2 </superscript> knock-in mouse and compare its activity with a Myh11-CreER <superscript> T2 </superscript> mouse. Both Cre drivers demonstrate equivalent recombination in vascular SMCs. However, Myh11-CreER <superscript> T2 </superscript> mice, but not Itga8-CreER <superscript> T2 </superscript> mice, display high activity in visceral SMC-containing tissues such as intestine, show early tamoxifen-independent activity, and produce high levels of CreER <superscript>T2</superscript> protein. Whereas Myh11-CreER <superscript> T2 </superscript> -mediated knockout of serum response factor ( Srf ) causes a lethal intestinal phenotype precluding analysis of the vasculature, loss of Srf with Itga8-CreER <superscript> T2 </superscript> ( Srf <superscript> Itga8 </superscript> ) yields viable mice with no evidence of intestinal pathology. Male and female Srf <superscript> Itga8 </superscript> mice exhibit vascular contractile incompetence, and angiotensin II causes elevated blood pressure in wild type, but not Srf <superscript> Itga8 </superscript> , male mice. These findings establish the Itga8-CreER <superscript> T2 </superscript> mouse as an alternative to existing SMC Cre mice for unfettered phenotyping of vascular SMCs following selective gene loss.

Details

Language :
English
ISSN :
2731-0590
Volume :
1
Issue :
11
Database :
MEDLINE
Journal :
Nature cardiovascular research
Publication Type :
Academic Journal
Accession number :
36424917
Full Text :
https://doi.org/10.1038/s44161-022-00162-1