Cargando…

Prrx1-driven LINC complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running

The Linker of Nucleoskeleton and Cytoskeleton (LINC) complex serves to connect the nuclear envelope and the cytoskeleton, influencing cellular processes such as nuclear arrangement, architecture, and mechanotransduction. The role LINC plays in mechanotransduction pathways in bone progenitor cells ha...

Descripción completa

Detalles Bibliográficos
Autores principales: Birks, Scott, Howard, Sean, Wright, Christian S., O’Rourke, Caroline, Lau, Anthony, Thompson, William R., Uzer, Gunes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10542150/
https://www.ncbi.nlm.nih.gov/pubmed/37790521
http://dx.doi.org/10.1101/2023.09.22.559054
_version_ 1785114032617816064
author Birks, Scott
Howard, Sean
Wright, Christian S.
O’Rourke, Caroline
Lau, Anthony
Thompson, William R.
Uzer, Gunes
author_facet Birks, Scott
Howard, Sean
Wright, Christian S.
O’Rourke, Caroline
Lau, Anthony
Thompson, William R.
Uzer, Gunes
author_sort Birks, Scott
collection PubMed
description The Linker of Nucleoskeleton and Cytoskeleton (LINC) complex serves to connect the nuclear envelope and the cytoskeleton, influencing cellular processes such as nuclear arrangement, architecture, and mechanotransduction. The role LINC plays in mechanotransduction pathways in bone progenitor cells has been well studied; however, the mechanisms by which LINC complexes govern in vivo bone formation remain less clear. To bridge this knowledge gap, we established a murine model disrupting LINC using transgenic Prx-Cre mice and floxed Tg(CAG-LacZ/EGFP-KASH2) mice. Prx-Cre mice express the Cre recombinase enzyme controlled by the paired-related homeobox gene-1 promoter, a pivotal regulator of skeletal development. Tg(CAG-LacZ/EGFP-KASH2) mice carry a lox-stop-lox flanked LacZ gene allowing for the overexpression of an EGFP-KASH2 fusion protein via cre recombinase mediated deletion of the LacZ cassette. This disrupts endogenous Nesprin-Sun binding in a dominant negative manner disconnecting nesprin from the nuclear envelope. By combining these lines, we generated a Prrx1(+) cell-specific LINC disruption model to study its impact on the developing skeleton and subsequently exercise-induced bone accrual. The findings presented here indicate Prx-driven LINC disruption (PDLD) cells exhibit no change in osteogenic and adipogenic potential compared to controls in vitro nor are there bone quality changes when compared to in sedentary animals at 8 weeks. Although PDLD animals displayed increased voluntary running activity, a 6-week exercise intervention did not significantly alter bone microarchitecture or mechanical properties.
format Online
Article
Text
id pubmed-10542150
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cold Spring Harbor Laboratory
record_format MEDLINE/PubMed
spelling pubmed-105421502023-10-03 Prrx1-driven LINC complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running Birks, Scott Howard, Sean Wright, Christian S. O’Rourke, Caroline Lau, Anthony Thompson, William R. Uzer, Gunes bioRxiv Article The Linker of Nucleoskeleton and Cytoskeleton (LINC) complex serves to connect the nuclear envelope and the cytoskeleton, influencing cellular processes such as nuclear arrangement, architecture, and mechanotransduction. The role LINC plays in mechanotransduction pathways in bone progenitor cells has been well studied; however, the mechanisms by which LINC complexes govern in vivo bone formation remain less clear. To bridge this knowledge gap, we established a murine model disrupting LINC using transgenic Prx-Cre mice and floxed Tg(CAG-LacZ/EGFP-KASH2) mice. Prx-Cre mice express the Cre recombinase enzyme controlled by the paired-related homeobox gene-1 promoter, a pivotal regulator of skeletal development. Tg(CAG-LacZ/EGFP-KASH2) mice carry a lox-stop-lox flanked LacZ gene allowing for the overexpression of an EGFP-KASH2 fusion protein via cre recombinase mediated deletion of the LacZ cassette. This disrupts endogenous Nesprin-Sun binding in a dominant negative manner disconnecting nesprin from the nuclear envelope. By combining these lines, we generated a Prrx1(+) cell-specific LINC disruption model to study its impact on the developing skeleton and subsequently exercise-induced bone accrual. The findings presented here indicate Prx-driven LINC disruption (PDLD) cells exhibit no change in osteogenic and adipogenic potential compared to controls in vitro nor are there bone quality changes when compared to in sedentary animals at 8 weeks. Although PDLD animals displayed increased voluntary running activity, a 6-week exercise intervention did not significantly alter bone microarchitecture or mechanical properties. Cold Spring Harbor Laboratory 2023-09-24 /pmc/articles/PMC10542150/ /pubmed/37790521 http://dx.doi.org/10.1101/2023.09.22.559054 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Birks, Scott
Howard, Sean
Wright, Christian S.
O’Rourke, Caroline
Lau, Anthony
Thompson, William R.
Uzer, Gunes
Prrx1-driven LINC complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running
title Prrx1-driven LINC complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running
title_full Prrx1-driven LINC complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running
title_fullStr Prrx1-driven LINC complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running
title_full_unstemmed Prrx1-driven LINC complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running
title_short Prrx1-driven LINC complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running
title_sort prrx1-driven linc complex disruption in vivo does not significantly alter bone properties in 8-week male mice nor after 6-weeks voluntary wheel running
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10542150/
https://www.ncbi.nlm.nih.gov/pubmed/37790521
http://dx.doi.org/10.1101/2023.09.22.559054
work_keys_str_mv AT birksscott prrx1drivenlinccomplexdisruptioninvivodoesnotsignificantlyalterbonepropertiesin8weekmalemicenorafter6weeksvoluntarywheelrunning
AT howardsean prrx1drivenlinccomplexdisruptioninvivodoesnotsignificantlyalterbonepropertiesin8weekmalemicenorafter6weeksvoluntarywheelrunning
AT wrightchristians prrx1drivenlinccomplexdisruptioninvivodoesnotsignificantlyalterbonepropertiesin8weekmalemicenorafter6weeksvoluntarywheelrunning
AT orourkecaroline prrx1drivenlinccomplexdisruptioninvivodoesnotsignificantlyalterbonepropertiesin8weekmalemicenorafter6weeksvoluntarywheelrunning
AT lauanthony prrx1drivenlinccomplexdisruptioninvivodoesnotsignificantlyalterbonepropertiesin8weekmalemicenorafter6weeksvoluntarywheelrunning
AT thompsonwilliamr prrx1drivenlinccomplexdisruptioninvivodoesnotsignificantlyalterbonepropertiesin8weekmalemicenorafter6weeksvoluntarywheelrunning
AT uzergunes prrx1drivenlinccomplexdisruptioninvivodoesnotsignificantlyalterbonepropertiesin8weekmalemicenorafter6weeksvoluntarywheelrunning