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FOXA1 deletion in luminal epithelium causes prostatic hyperplasia and alteration of differentiated phenotype

机译:腔上皮中的FOXA1缺失导致前列腺增生和分化表型的改变

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The forkhead box (Fox) superfamily of transcription factors has essential roles in organogenesis and tissue differentiation. Foxa1 and Foxa2 are expressed during prostate budding and ductal morphogenesis, whereas Foxa1 expression is retained in adult prostate epithelium. Previous characterization of prostatic tissue rescued from embryonic Foxa1 knockout mice revealed Foxa1 to be essential for ductal morphogenesis and epithelial maturation. However, it is unknown whether Foxa1 is required to maintain the differentiated status in adult prostate epithelium. Here, we employed the PBCre4 transgenic system and determined the impact of prostate-specific Foxa1 deletion in adult murine epithelium. PBCre4/Foxa1loxp/loxp mouse prostates showed progressive florid hyperplasia with extensive cribriform patterning, with the anterior prostate being most affected. Immunohistochemistry studies show mosaic Foxa1 KO consistent with PBCre4 activity, with Foxa1 KO epithelial cells specifically exhibiting altered cell morphology, increased proliferation, and elevated expression of basal cell markers. Castration studies showed that, while PBCre4/Foxa1loxp/loxp prostates did not exhibit altered sensitivity in response to hormone ablation compared with control prostates, the number of Foxa1-positive cells in mosaic Foxa1 KO prostates was significantly reduced compared with Foxa1-negative cells following castration. Unexpectedly, gene expression profile analyses revealed that Foxa1 deletion caused abnormal expression of seminal vesicle-associated genes in KO prostates. In summary, these results indicate Foxa1 expression is required for the maintenance of prostatic cellular differentiation.
机译:转录因子的叉头盒(Fox)超家族在器官发生和组织分化中具有重要作用。 Foxa1和Foxa2在前列腺芽和导管形态发生过程中表达,而Foxa1表达保留在成人前列腺上皮中。从胚胎Foxa1基因敲除小鼠中拯救出来的前列腺组织的先前特征显示Foxa1对导管形态发生和上皮成熟至关重要。然而,尚不清楚是否需要Foxa1维持成人前列腺上皮细胞的分化状态。在这里,我们采用了PBCre4转基因系统,并确定了成年鼠上皮中前列腺特异性Foxa1缺失的影响。 PBCre4 / Foxa1loxp / loxp小鼠前列腺显示进行性小花增生,伴有广泛的筛状图案,前前列腺受影响最大。免疫组织化学研究显示,镶嵌的Foxa1 KO与PBCre4活性一致,Foxa1 KO上皮细胞特异性表现出改变的细胞形态,增加的增殖和升高的基底细胞标记物的表达。去势研究表明,尽管与对照前列腺相比,PBCre4 / Foxa1loxp / loxp前列腺对激素消融的反应没有改变,但与去势后的Foxa1阴性细胞相比,镶嵌Foxa1 KO前列腺中Foxa1阳性细胞的数量明显减少。 。出乎意料的是,基因表达谱分析显示Foxa1缺失导致KO前列腺中精囊相关基因的异常表达。总之,这些结果表明Foxa1表达是维持前列腺细胞分化所必需的。

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