Temporospatial expression of neurogranin in the rat molar development

IF 2.9 4区 生物学 Q3 CELL BIOLOGY
Jung-Sun Moon, Dong-Wook Yang, Dong-Hoo Kim, Jee-Hae Kang, Min-Seok Kim, Sun-Hun Kim
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引用次数: 0

Abstract

Differentiation and proliferation of odontogenic cells are regulated by specific genes, driving the morphological changes during tooth germ development. While substantial data have been gathered on genes involved in early tooth development, knowledge about the terminal differentiation of odontogenic cells—particularly ameloblasts—remains limited. To identify molecules involved in cytodifferentiation, gene expression profiles in maxillary cap stage and root stage molar germs of rats at postnatal day 9, respectively were compared using differential display-PCR. This analysis unexpectedly revealed the upregulation of neurogranin, a brain-specific calmodulin-binding protein, at the cap stage. The expression of neurogranin at both transcriptional and translational levels progressively decreased from the early bell stage, through the crown stage, to the root stage in molar germs. Similar temporal expression patterns were observed for other calmodulin-binding proteins, including neuromodulin and PEP-19. Immunofluorescence confirmed the presence of neurogranin in the inner enamel epithelium of cap and early bell stage molar germs. Correspondingly, the expression levels of calmodulin and PKCγ mRNA displayed dynamic changes during the developmental timeline. Notably, the ablation of neurogranin in SF2 ameloblastic cells enhanced ameloblast differentiation and mineralization. These findings, for the first time, suggest that neurogranin may play a critical role in the temporospatial regulation of the differentiation of inner enamel epithelial cells into ameloblasts.

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来源期刊
Journal of Molecular Histology
Journal of Molecular Histology 生物-细胞生物学
CiteScore
5.90
自引率
0.00%
发文量
68
审稿时长
1 months
期刊介绍: The Journal of Molecular Histology publishes results of original research on the localization and expression of molecules in animal cells, tissues and organs. Coverage includes studies describing novel cellular or ultrastructural distributions of molecules which provide insight into biochemical or physiological function, development, histologic structure and disease processes. Major research themes of particular interest include: - Cell-Cell and Cell-Matrix Interactions; - Connective Tissues; - Development and Disease; - Neuroscience. Please note that the Journal of Molecular Histology does not consider manuscripts dealing with the application of immunological or other probes on non-standard laboratory animal models unless the results are clearly of significant and general biological importance. The Journal of Molecular Histology publishes full-length original research papers, review articles, short communications and letters to the editors. All manuscripts are typically reviewed by two independent referees. The Journal of Molecular Histology is a continuation of The Histochemical Journal.
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