成年大鼠垂体干/祖细胞龛中紧密连接相关蛋白的表达和定位

S. Yoshida, Hideaki Yurino, Masaaki Kobayashi, Naoto Nishimura, K. Yano, K. Fujiwara, S. Hashimoto, T. Kato, Y. Kato
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引用次数: 0

摘要

垂体内分泌细胞由成人垂体前叶表达sox2的干/祖细胞提供。这些sox2阳性细胞维持在两种微环境(生态位)中:边缘细胞层(MCL)生态位和实质生态位。最近,我们从实质生态位中分离出密集的sox2阳性细胞簇,利用它们对蛋白酶处理的抗性作为实质干/祖细胞(PS)簇。在本研究中,通过分析这些分离的ps簇,我们试图确定垂体干/祖细胞生态位的新结构特征。实时荧光定量PCR结果显示,在分离的ps簇中有明显的紧密连接相关基因表达。免疫细胞染色显示,紧密连接分子ZO-1和occludin定位于分离的ps簇的顶膜上,面对假滤泡样结构,而不考虑S100β的表达,这是sox2阳性细胞亚群的特征。此外,成年大鼠垂体的免疫组化结果清楚地表明,ZO-1和occludin密集地存在于环绕假卵泡的实质生态位中,而在面向残腔的mcl生态位的顶膜中也观察到它们的存在。总的来说,这些紧密连接相关蛋白可能参与垂体干/祖细胞生态位可塑性的构建和维持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression and localization of tight junction-related proteins in adult rat pituitary stem/progenitor cell niches
Pituitary endocrine cells are supplied by Sox2-expressing stem/progenitor cells in the anterior lobe of the adult pituitary gland. These SOX2-positive cells are maintained in two types of microenvironments (niches): the marginal cell layer (MCL)-niche and the parenchymal-niche. Recently, we isolated dense SOX2-positive cell clusters from the parenchymal-niche by taking advantage of their resistance to protease treatment as parenchymal stem/progenitor cell (PS)-clusters. In the present study, by analyzing these isolated PS-clusters, we attempted to identify novel structural characteristics of pituitary stem/progenitor cell niches. Quantitative real-time PCR showed that tight junction-related genes were distinctly expressed in the isolated PS-clusters. Immunocytostaining showed that the tight junction molecules, ZO-1 and occludin, were localized in the apical membrane facing the pseudo-follicle-like structure of the isolated PS-clusters regardless of the expression of S100β, which distinguishes the sub-population of SOX2-positive cells. Furthermore, immunohistochemistry of the pituitary glands of adult rats clearly demonstrated that ZO-1 and occludin were densely present in the parenchymal-niche encircling the pseudo-follicle, while they were observed in the apical membrane in the MCL-niche facing the residual lumen. Collectively, these tight junction-related proteins might be involved in the architecture and maintenance of the plasticity of pituitary stem/progenitor cell niches.
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