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首页> 外文期刊>American Journal of Physiology >Developmental regulation of epithelial sodium channel subunit mRNA expression in rat colon and lung.
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Developmental regulation of epithelial sodium channel subunit mRNA expression in rat colon and lung.

机译:大鼠结肠和肺中上皮钠通道亚基mRNA表达的发育调控。

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摘要

Na+ absorption via amiloride-sensitive Na+ channels is of critical importance in the transition between fetal and neonatal life in several tissues, including the colon, lung, and kidney. To characterize and contrast the mRNA expression of each of the three epithelial Na+ channel complex (ENaC) subunits, we conducted RNase protection assays (RPA) and in situ hybridization in colon and lung in fetal (17, 19, 20, and 21 days) and postnatal (1, 3, 9, 15, and 30 days) rats (r). In the colon the alpha-, beta-, and gamma-rENaC subunits showed quantitatively different but qualitatively similar expression. All three subunits gradually increased in abundance from fetal day 19 through day 30 of life. The amount of each subunit on day 30 was approximately three times the amount at day 1. In situ hybridization showed that each subunit was localized to the surface epithelial cells with minimal expression in the crypts. The lung showed a completely different pattern. In contrast to the colon, the total amount of alpha-rENaC mRNA (by RPA) in the lung increased dramatically from fetal day 19 to 21, whereas beta- and gamma-rENaC showed modest prenatal increases. The amounts of all three mRNAs fell after birth through day 9 (to about 75% of the day 1 value). On days 15 and 30 the amount of mRNA rose to approach the values on day 1. alpha-rENaC mRNA abundance always exceeded beta- and gamma-rENaC, and the quantitative expression was different for alpha- than for beta- and gamma-rENaC. In situ hybridization studies showed that all three subunits were expressed in epithelial cells of the bronchi, bronchioles, and alveoli and not in blood vessels. These studies show striking developmental heterogeneity in rENaC mRNA expression between lung and colon, probably reflecting different developmental regulatory mechanisms in these organs.
机译:通过对阿米洛利敏感的Na +通道吸收Na +对于胎儿和新生儿在包括结肠,肺和肾脏在内的多种组织中的生命过渡至关重要。为了表征和对比三个上皮Na +通道复合物(ENaC)各个亚基的mRNA表达,我们进行了RNase保护分析(RPA)并在胎儿的结肠和肺中进行原位杂交(17、19、20和21天)和出生后(1、3、9、15和30天)大鼠(r)。在结肠中,α-,β-和γ-rENaC亚基显示出定量上不同但在质上相似的表达。从胎儿的第19天到第30天,所有三个亚基的丰度逐渐增加。在第30天,每个亚基的量大约是在第1天的量的三倍。原位杂交表明,每个亚基位于隐窝中表达最少的表面上皮细胞。肺部显示出完全不同的模式。与结肠相反,从胎儿第19天到21天,肺中α-rENaCmRNA的总量(通过RPA)急剧增加,而β-和γ-rENaC的产前适度增加。出生后直至第9天所有三种mRNA的量均下降(下降至第1天值的75%)。在第15天和第30天,mRNA的量增加到接近第1天的值。alpha-rENaC mRNA的丰度始终超过beta-和gamma-rENaC,并且alpha-定量表达不同于beta-和gamma-rENaC。原位杂交研究表明,所有三个亚基均在支气管,细支气管和肺泡的上皮细胞中表达,而不在血管中表达。这些研究表明,rENaC mRNA在肺和结肠之间的表达具有惊人的发育异质性,可能反映了这些器官中不同的发育调控机制。

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