Schwarzer Christian, Machen Terry E, Illek Beate, Fischer Horst
Children's Hospital Oakland Research Institute, 5700 Martin Luther King Jr. Way, Oakland, CA 94609, USA.
J Biol Chem. 2004 Aug 27;279(35):36454-61. doi: 10.1074/jbc.M404983200. Epub 2004 Jun 21.
The purpose of this study was to determine the role of NADPH oxidase in H(+) secretion by airway epithelia. In whole cell patch clamp recordings primary human tracheal epithelial cells (hTE) and the human serous gland cell line Calu-3 expressed a functionally similar zinc-blockable plasma membrane H(+) conductance. However, the rate of H(+) secretion of confluent epithelial monolayers measured in Ussing chambers was 9-fold larger in hTE compared with Calu-3. In hTE H(+) secretion was blocked by mucosal ZnCl(2) and the NADPH oxidase blockers acetovanillone and 4-(2-aminoethyl)benzenesulfonyl fluoride (AEBSF), whereas these same blockers had no effect in Calu-3. We determined levels of transcripts for the NADPH oxidase transmembrane isoforms (Nox1 through -5, Duox1 and -2, and p22(phox)) and found Duox1, -2, and p22(phox) to be highly expressed in hTE, as well as the intracellular subunits p40(phox), p47(phox), and p67(phox). In contrast, Calu-3 lacked transcripts for Duox1, p40(phox), and p47(phox). Anti-Duox antibody staining resulted in prominent apical staining in hTE but no significant staining in Calu-3. When treated with amiloride to block the Na(+)/H(+) exchanger, intracellular pH in hTE acidified at significantly higher rates than in Calu-3, and treatment with AEBSF blocked acidification. These data suggest a role for an apically located Duox-based NADPH oxidase during intracellular H(+) production and H(+) secretion, but not in H(+) conduction.
本研究的目的是确定NADPH氧化酶在气道上皮细胞H⁺分泌中的作用。在全细胞膜片钳记录中,原代人气管上皮细胞(hTE)和人浆液性腺细胞系Calu-3表达功能相似的可被锌阻断的质膜H⁺电导。然而,在Ussing室中测量的汇合上皮单层的H⁺分泌速率,hTE比Calu-3大9倍。在hTE中,H⁺分泌被黏膜ZnCl₂以及NADPH氧化酶阻滞剂乙酰香草酮和4-(2-氨基乙基)苯磺酰氟(AEBSF)阻断,而这些相同的阻滞剂对Calu-3没有影响。我们测定了NADPH氧化酶跨膜亚型(Nox1至-5、Duox1和-2以及p22(phox))的转录本水平,发现Duox1、-2和p22(phox)在hTE中高表达,细胞内亚基p40(phox)、p47(phox)和p67(phox)也高表达。相比之下,Calu-3缺乏Duox1、p40(phox)和p47(phox)的转录本。抗Duox抗体染色在hTE中导致明显的顶端染色,但在Calu-3中没有明显染色。用氨氯吡咪阻断Na⁺/H⁺交换体后,hTE中的细胞内pH酸化速率明显高于Calu-3,用AEBSF处理可阻断酸化。这些数据表明,位于顶端的基于Duox的NADPH氧化酶在细胞内H⁺产生和H⁺分泌过程中发挥作用,但在H⁺传导中不起作用。