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Published on: December 18, 2019
Development of mice with osteoblast-specific connexin43 gene deletion
Charles H M Castro1, Joseph P Stains, Sharmin Sheikh
1Division of Bone and Mineral Diseases, Washington University School of Medicine, St. Louis, MO 63110, USA.
Abstract:
Genetic deficiency of Cx43 in vivo causes skeletal developmental defects, osteoblast dysfunction and perinatal lethality. To determine the role of Cx43 in the adult skeleton, we developed two models of osteoblast-specific Cx43 gene deletion using Cre mediated replacement of a "floxed" Cx43 allele with a LacZ reporter gene. Cre recombinase expression in osteoblasts was driven by either the osteocalcin OG2 promoter or the 2.3 kb fragment of the Colalpha1(I) promoter. Homozygous Cx43(fl/fl) mice, in which the Cx43 coding region is flanked by two loxP sites, were crossed with Cre expressing mice in a heterozygous Cx43-null background [Cx43(+/-); Colalpha1(I)-Cre or Cx43(+/-); OG2-Cre]. Cx43 gene ablation was demonstrated in tissues by selective X-gal staining of cells lining the endosteal surface, and in cultured osteoblastic cells from calvaria using different approaches. Although no LacZ expression was observed in proliferating calvaria cells, before osteoblast differentiation begins, post-proliferative cells isolated from conditional knockout mice [Cx43(fl/-); Colalpha1(I)-Cre or Cx43(fl/-); OG2-Cre] developed strong LacZ expression as they differentiated, in parallel to a progressive disappearance of Cx43 mRNA and protein abundance relative to controls. Selective Cre mediated Cx43 gene inactivation in bone forming cells will be useful to determine the role of Cx43 in adult skeletal homeostasis and overcome the perinatal lethality of the conventional null model.
Insights
Genetic deficiency of connexin 43 (Cx43) causes skeletal defects. This study developed models to investigate Cx43
Area of Science:
- Cell Biology
- Genetics
- Skeletal Biology
Background:
- Genetic deficiency of connexin 43 (Cx43) leads to skeletal developmental defects and perinatal lethality.
- Understanding Cx43's role in the adult skeleton is crucial for bone health.
- Previous models did not allow for specific investigation in adult bone.
Purpose of the Study:
- To investigate the role of Cx43 in adult skeletal homeostasis.
- To develop conditional knockout mouse models for osteoblast-specific Cx43 deletion.
- To overcome the perinatal lethality associated with global Cx43 deficiency.
Main Methods:
- Developed two osteoblast-specific Cx43 gene deletion models using Cre-lox technology.
- Utilized osteocalcin (OG2) and collagen type I (Colalpha1(I)) promoters to drive Cre recombinase expression.
- Verified Cx43 gene ablation in differentiated osteoblasts via X-gal staining, mRNA, and protein analysis.
Main Results:
- Conditional knockout mice exhibited successful, targeted Cx43 gene inactivation in bone-forming cells.
- LacZ reporter gene expression confirmed Cx43 deletion during osteoblast differentiation.
- Decreased Cx43 mRNA and protein levels were observed in differentiating osteoblasts from knockout models.
Conclusions:
- Osteoblast-specific deletion of Cx43 is achievable in adult mice.
- These models enable the study of Cx43 function in adult skeletal homeostasis.
- This approach circumvents the lethality issues of conventional Cx43 knockout models.

