Nestin expression is differently regulated between odontoblasts and the subodontoblastic layer in mice
The Nestin gene encodes type VI intermediate filament and is known to be expressed in undifferentiated cells during neurogenesis and myogenesis. To regulate Nestin expression, the first or second intron enhancer is activated in a tissue-dependent manner, for example, the former in mesodermal cells a...
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Veröffentlicht in: | Histochemistry and cell biology 2018-04, Vol.149 (4), p.383-391 |
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Sprache: | eng |
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Zusammenfassung: | The
Nestin
gene encodes type VI intermediate filament and is known to be expressed in undifferentiated cells during neurogenesis and myogenesis. To regulate
Nestin
expression, the first or second intron enhancer is activated in a tissue-dependent manner, for example, the former in mesodermal cells and the latter in neural stem cells. Although
Nestin
has also been used as a differentiation marker for odontoblasts during tooth development, how
Nestin
expression is regulated in odontoblasts remains unclear. Therefore, this study aimed to compare the expression patterns of
Nestin
-GFP (green fluorescent protein) with that of endogenous Nestin in developing teeth of
Nestin-EGFP
(enhanced GFP) transgenic mice, in which the second intron enhancer is connected with the
EGFP
domain, at postnatal 7d, 3w, and 8w. Immunohistochemical and in situ hybridization analyses revealed that endogenous Nestin protein and
Nestin
mRNA were intensely expressed in differentiated odontoblasts, while GFP immunoreactivity, which reflects the activity of
Nestin
second intron enhancer-mediated transcription, was mainly observed in the subodontoblastic layer. These results indicate that the first intron enhancer may be activated in differentiated odontoblasts. Intriguingly,
Nestin
-GFP expression in the subodontoblastic layer was found to be restricted to the coronal pulp of molars, which is susceptible to tooth injuries. Because the subodontoblastic layer serves as a reservoir of newly differentiated odontoblast-like cells upon exogenous stimuli to dentin, our findings suggest that the original odontoblasts and regenerated odontoblast-like cells may differently regulate
Nestin
expression. |
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ISSN: | 0948-6143 1432-119X |
DOI: | 10.1007/s00418-018-1651-3 |