Tlx1 encodes a transcription factor expressed in several craniofacial structures of developing mice. The role of Tlx1 in salivary gland development was examined using morphological and immunohistochemical analyses of Tlx1 null mice. Tlx1 is expressed in submandibular and sublingual glands but not parotid glands of neonatal and adult male and female C57Bl/6J (Tlx1(+/+) ) mice. TLX1 protein was localized to the nuclei of terminal tubule cells, developing duct cells and mesenchymal cells in neonatal submandibular and sublingual glands, and to nuclei of duct cells and connective tissue cells in adult glands. Occasionally, TLX1 was observed in nuclei of epithelial cells in or adjacent to the acini. Submandibular glands were smaller and sublingual glands were larger in size in mutant mice (Tlx1(-/-) ) compared to wild-type mice. Differentiation of terminal tubule and proacinar cells of neonatal Tlx1(-/-) submandibular glands was abnormal; expression of their characteristic products, submandibular gland protein C and parotid secretory protein, respectively, was reduced. At 3âweeks postnatally, terminal tubule cells at the acinar-intercalated duct junction were poorly developed or absent in Tlx1(-/-) mice. Granular convoluted ducts in adult mutant mice were decreased, and epidermal growth factor and nerve growth factor expression were reduced. Along with normal acinar cell proteins, adult acinar cells of Tlx1(-/-) mice continued to express neonatal proteins and expressed parotid proteins not normally present in submandibular glands. Sublingual gland mucous acinar and serous demilune cell differentiation were altered. Tlx1 is necessary for proper differentiation of submandibular and sublingual gland acinar cells, and granular convoluted ducts. The mechanism(s) underlying Tlx1 regulation of salivary gland development and differentiation remains unknown.
Tlx1 regulates acinar and duct development in mouse salivary glands.
Tlx1 调控小鼠唾液腺腺泡和导管的发育
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作者:Hand Arthur R, Abramson Cailyn X G, Dressler Keith A
| 期刊: | Journal of Anatomy | 影响因子: | 1.900 |
| 时间: | 2024 | 起止号: | 2024 Feb;244(2):343-357 |
| doi: | 10.1111/joa.13964 | 种属: | Mouse |
| 研究方向: | 发育与干细胞 | ||
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