Generation of bicistronic Dmp1-Cre knock-in mice using a self-cleaving 2A peptide
Introduction The conditional manipulation of genes using the Cre recombinase-locus of crossover in P1 (Cre/ lox P) system is an important tool for revealing gene functions and cell lineages in vivo. The outcome of this method is dependent on the performance of Cre-driver mouse strains. In most cases...
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Veröffentlicht in: | Journal of bone and mineral metabolism 2023-07, Vol.41 (4), p.470-480 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Introduction
The conditional manipulation of genes using the Cre recombinase-locus of crossover in P1 (Cre/
lox
P) system is an important tool for revealing gene functions and cell lineages in vivo. The outcome of this method is dependent on the performance of Cre-driver mouse strains. In most cases, Cre knock-in mice show better specificity than randomly inserted Cre transgenic mice. However, following knock-in, the expression of the original gene replaced by
Cre
is lost.
Materials and methods
We generated a new differentiated osteoblast- and osteocyte-specific Cre knock-in mouse line that carries the viral T2A sequence encoding a 2A self-cleaving peptide at the end of the coding region of the dentin matrix protein 1 (
Dmp1
) gene accompanied by the
Cre
gene.
Results
We confirmed that Dmp1-T2A-Cre mice showed high
Cre
expression in osteoblasts, osteocytes, odontoblasts, and periodontal ligament cells and that the 2A self-cleaving peptide efficiently produced both Dmp1 and Cre proteins. Furthermore, unlike the
Dmp1
knockout mice, homozygous Dmp1-T2A-Cre mice showed no skeletal abnormalities. Analysis using the Cre reporter strain confirmed differentiated osteoblast- and osteocyte-specific Cre-mediated recombination in the skeleton. Furthermore, recombination was also detected in some nuclei of skeletal muscle cells, spermatocytes, and intestinal cells.
Conclusion
2A-Cre functions effectively in vivo, and Dmp1-T2A-Cre knock-in mice are a useful tool for studying the functioning of various genes in hard tissues. |
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ISSN: | 0914-8779 1435-5604 |
DOI: | 10.1007/s00774-023-01425-y |