Swetloff Adam, Ferretti Patrizia
Developmental Biology Unit, Institute of Child Health, UCL, London, UK.
Int J Dev Biol. 2005;49(7):859-65. doi: 10.1387/ijdb.051996as.
The choroid plexus epithelium (CPe) is a specialized epithelium involved primarily in the production of cerebrospoinal fluid (CSF) which is important for maintaining an optimal homeostatic environment for the brain. Although, the physiology of the CPe is fairly well understood, its development has not been thoroughly studied. It has been recently shown that mice lacking functional transcription factors, E2F5, foxJ1 or p73, develop non-obstructive hydrocephalus likely due to CPe dysfunction. We have further studied their expression in the mouse and human developing CPe, focusing particularly on E2F5. We show here that in the mouse E2F5, foxJ1 and p73 transcripts are detectable as soon as the choroid plexuses form. E2F5 protein is also detected as soon as the choroid plexuses are morphologically apparent both in mouse and human, suggesting that its expression is regulated at the transcriptional level. E2F5 protein is down-regulated late in embryogenesis and this coincides with a change in its intracellular localization, from predominantly nuclear to cytoplasmic. The pattern of expression and intracellular localization of E2F5 in vivo does not appear to correlate with that of proliferating CPe cells, as indicated by protein cell nuclear antigen (PCNA) staining, but rather with their maturation, as changes in E2F5 localization from the nucleus to the cytoplasm parallel the morphological change from pseudostratified to cuboidal epithelium.
脉络丛上皮(CPe)是一种特殊的上皮组织,主要参与脑脊液(CSF)的生成,脑脊液对于维持大脑的最佳稳态环境至关重要。尽管脉络丛上皮的生理学已得到相当充分的了解,但其发育尚未得到深入研究。最近有研究表明,缺乏功能性转录因子E2F5、foxJ1或p73的小鼠会出现非梗阻性脑积水,这可能是由于脉络丛上皮功能障碍所致。我们进一步研究了它们在小鼠和人类发育中的脉络丛上皮中的表达,尤其关注E2F5。我们在此表明,在小鼠中,一旦脉络丛形成,就可检测到E2F5、foxJ1和p73的转录本。在小鼠和人类中,一旦脉络丛在形态上显现出来,就能检测到E2F5蛋白,这表明其表达在转录水平受到调控。E2F5蛋白在胚胎发育后期下调,这与其细胞内定位的变化相吻合,即从主要位于细胞核转变为位于细胞质。如增殖细胞核抗原(PCNA)染色所示,E2F5在体内的表达模式和细胞内定位似乎与增殖的脉络丛上皮细胞的表达模式和定位无关,而是与其成熟相关,因为E2F5从细胞核到细胞质的定位变化与从假复层上皮到立方上皮的形态变化平行。