4.7 Article

Claudin-9 constitutes tight junctions of folliculo-stellate cells in the anterior pituitary gland

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-021-01004-z

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  1. National Institute for Physiological Sciences [19-136, 21-106]
  2. Office for Gender Equality Support in Fukushima Medical University
  3. Akaeda Medical Research Foundation

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The folliculo-stellate (FS) cells in the anterior pituitary glands form follicular lumens sealed by tight junctions (TJs). Occludin and claudin-9 are major components of TJs in FS cells. Claudin-9 expression increases postnatally, showing developmental regulation, and other proteins like angulin-1, angulin-2, and tricellulin are localized at tricellular contacts of FS cells.
The anterior pituitary gland regulates growth, metabolism, and reproduction by secreting hormones. Folliculo-stellate (FS) cells are non-endocrine cells located among hormone-producing cells in the anterior pituitary glands. They form follicular lumens, which are sealed by tight junctions (TJs). Although FS cells are hypothesized to contribute to fine-tuning of endocrine cells, little is known about the exact roles of FS cells. Here, we investigated the molecular composition of TJs in FS cells. We demonstrated that occludin is a good marker for TJs in the pituitary gland and examined the structure of the lumens surrounded by FS cells. We also found that claudin-9 is a major component of TJs in the FS cells. In immunoelectron microscopy, claudin-9 was specifically localized at TJs of the FS cells. The expression of claudin-9 was gradually increased in the pituitary gland after birth, suggesting that claudin-9 is developmentally regulated and performs some specific functions on the paracellular barrier of follicles in the pituitary gland. Furthermore, we found that angulin-1, angulin-2, and tricellulin are localized at the tricellular contacts of the FS cells. Our findings provide a first comprehensive molecular profile of TJs in the FS cells, and may lead us towards unveiling the FS cell functions.

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