Venkatesh V C, Katzberg H D
Department of Pediatrics, British Columbia Research Institute for Child and Family Health, University of British Columbia, Vancouver, Canada.
Am J Physiol. 1997 Jul;273(1 Pt 1):L227-33. doi: 10.1152/ajplung.1997.273.1.L227.
Pulmonary epithelial Na+ channels (ENaC), composed of three distinct subunits (alpha, beta, and gamma), play a critical role in the regulation of fluid reabsorption from airspaces of late-gestation fetal lung. We studied the expression of ENaC subunit genes in cultured human fetal lung. All three mRNAs were expressed at low levels in second trimester lung (13-32% of adult values at 24 wk gestation). There was a spontaneous increase of approximately threefold over preculture values of all three subunits within 24 h of explant culture in serum-free Waymouth's medium. Dexamethasone (Dex) induced all three mRNAs by two- to threefold. Maximal induction was noted by 8 h with 30-100 nM Dex and half-maximal stimulation with 3-10 nM Dex. Cycloheximide decreased basal expression of all three subunits by 8 h but did not alter the response to Dex. Actinomycin D and 5,6-dichloro-1-beta-D-ribofuranosylbenzimidazole (DRB), inhibitors of RNA polymerase II, decreased the basal and the Dex-induced expression of all three subunits with a more marked effect on human hENaC-gamma than on hENaC-alpha or hENaC-beta. Under conditions where transcription was blocked by actinomycin D or DRB, Dex did not alter the stability of the three mRNAs. Triiodothyronine (T3) at low (2 nM) or high (100 nM) concentrations had no effect on the expression of the three subunits in the presence or absence of low (10 nM) or high (100 nM) concentrations of Dex for 8 or 24 h. Similarly, 8-bromoadenosine 3',5'-cyclic monophosphate (2 microM) had no effect on basal or Dex-induced increase in the three subunits. We conclude that the three Na+ channel subunit genes are expressed in second trimester human fetal lung and are coordinately upregulated by glucocorticoid hormones but not by T3 or adenosine 3',5'-cyclic monophosphate. Glucocorticoid induction is receptor mediated, is primarily transcriptional, and does not require the induction of an intermediate protein for transcriptional enhancement. We speculate that induction of lung ENaC may contribute to the beneficial effects of antenatal glucocorticoids in premature babies.
肺上皮钠离子通道(ENaC)由三个不同的亚基(α、β和γ)组成,在调节妊娠晚期胎儿肺气道液体重吸收中起关键作用。我们研究了ENaC亚基基因在培养的人胎儿肺中的表达。在孕中期肺中,所有三种mRNA的表达水平都很低(妊娠24周时为成人水平的13 - 32%)。在无血清的韦茅斯培养基中进行外植体培养24小时内,所有三个亚基的表达均自发增加,较培养前的值增加了约三倍。地塞米松(Dex)使所有三种mRNA的表达增加了两到三倍。在30 - 100 nM Dex作用8小时时达到最大诱导,3 - 10 nM Dex时达到半最大刺激。放线菌酮在8小时内降低了所有三个亚基的基础表达,但不改变对Dex的反应。放线菌素D和5,6 - 二氯 - 1 - β - D - 呋喃核糖基苯并咪唑(DRB),RNA聚合酶II的抑制剂,降低了所有三个亚基的基础表达和Dex诱导的表达,对人hENaC - γ的影响比对hENaC - α或hENaC - β更明显。在放线菌素D或DRB阻断转录的条件下,Dex不改变三种mRNA的稳定性。低浓度(2 nM)或高浓度(100 nM)的三碘甲状腺原氨酸(T3)在存在或不存在低浓度(10 nM)或高浓度(100 nM)Dex的情况下,作用8或24小时,对三个亚基的表达均无影响。同样,8 - 溴腺苷3',5' - 环一磷酸(2 μM)对基础表达或Dex诱导的三个亚基增加均无影响。我们得出结论,三个钠离子通道亚基基因在孕中期人胎儿肺中表达,并且由糖皮质激素协同上调,但不由T3或腺苷3',5' - 环一磷酸上调。糖皮质激素诱导是受体介导的,主要是转录性的,并且不需要诱导中间蛋白来增强转录。我们推测肺ENaC的诱导可能有助于产前糖皮质激素对早产儿的有益作用。