Matsushita K, McCray P B, Sigmund R D, Welsh M J, Stokes J B
Department of Internal Medicine, Howard Hughes Medical Institute, University of Iowa College of Medicine, Iowa City 52242, USA.
Am J Physiol. 1996 Aug;271(2 Pt 1):L332-9. doi: 10.1152/ajplung.1996.271.2.L332.
The transport of Na+ through amiloride-sensitive sodium channels (ENaC) plays a major role in the absorption of fluid across the pulmonary epithelium. The proteins forming the ENaC channel are encoded by three genes in the rat (alpha-, beta-, and gamma-rENaC). According to Northern blot, all three subunit mRNAs were expressed in adult rat lung. Each subunit was expressed as a single transcript of approximately 3.7, 2.2, and 3.2 kb for alpha-, beta-, and gamma-rENaC, respectively. To localize the alpha-, beta-, and gamma-rENaC subunit mRNAs, we used in situ hybridization. Frozen and paraffin-embedded tissues were hybridized with sense and antisense 35S-labeled riboprobes. The alpha-rENaC mRNA was most abundant and was expressed diffusely in epithelia of the trachea, bronchi, bronchioles, and alveoli. At the alveolar level, alpha-rENaC was expressed in type II cells. The beta- and gamma-rENaC mRNAs were most abundant in the bronchial and bronchiolar epithelia. All three subunits were expressed in the renal cortical collecting duct in a pattern similar to that previously reported by other investigators. Thus the rENaC subunit mRNAs are expressed in regions of the lung where functional Na+ absorption is found. These results are consistent with an important role for ENaC in the absorption of Na+ and fluid across the pulmonary epithelium in all regions of the lung.
钠离子通过氨氯地平敏感的钠通道(ENaC)的转运在跨肺上皮的液体吸收中起主要作用。构成ENaC通道的蛋白质由大鼠的三个基因(α-、β-和γ-rENaC)编码。根据Northern印迹法,所有三个亚基的mRNA在成年大鼠肺中均有表达。每个亚基分别以约3.7、2.2和3.2 kb的单一转录本形式表达,分别对应α-、β-和γ-rENaC。为了定位α-、β-和γ-rENaC亚基的mRNA,我们使用了原位杂交技术。将冷冻和石蜡包埋的组织与正义和反义35S标记的核糖探针进行杂交。α-rENaC mRNA最为丰富,在气管、支气管、细支气管和肺泡的上皮细胞中广泛表达。在肺泡水平,α-rENaC在II型细胞中表达。β-和γ-rENaC mRNA在支气管和细支气管上皮中最为丰富。所有三个亚基在肾皮质集合管中的表达模式与其他研究者先前报道的相似。因此,rENaC亚基的mRNA在肺中发现有功能性钠离子吸收的区域表达。这些结果与ENaC在肺的所有区域跨肺上皮吸收钠离子和液体中的重要作用一致。