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烟酰胺腺嘌呤二核苷酸磷酸氧化酶和一种对过氧化氢敏感的钾通道可能在气道化学感受器和小细胞肺癌细胞系中作为氧传感器复合体发挥作用。

NADPH-oxidase and a hydrogen peroxide-sensitive K+ channel may function as an oxygen sensor complex in airway chemoreceptors and small cell lung carcinoma cell lines.

作者信息

Wang D, Youngson C, Wong V, Yeger H, Dinauer M C, Vega-Saenz Miera E, Rudy B, Cutz E

机构信息

Department of Pathology, Hospital for Sick Children, Toronto, ON, Canada.

出版信息

Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):13182-7. doi: 10.1073/pnas.93.23.13182.

Abstract

Pulmonary neuroepithelial bodies (NEB) are widely distributed throughout the airway mucosa of human and animal lungs. Based on the observation that NEB cells have a candidate oxygen sensor enzyme complex (NADPH oxidase) and an oxygen-sensitive K+ current, it has been suggested that NEB may function as airway chemoreceptors. Here we report that mRNAs for both the hydrogen peroxide sensitive voltage gated potassium channel subunit (KH2O2) KV3.3a and membrane components of NADPH oxidase (gp91phox and p22phox) are coexpressed in the NEB cells of fetal rabbit and neonatal human lungs. Using a microfluorometry and dihydrorhodamine 123 as a probe to assess H2O2 generation, NEB cells exhibited oxidase activity under basal conditions. The oxidase in NEB cells was significantly stimulated by exposure to phorbol esther (0.1 microM) and inhibited by diphenyliodonium (5 microM). Studies using whole-cell voltage clamp showed that the K+ current of cultured fetal rabbit NEB cells exhibited inactivating properties similar to KV3.3a transcripts expressed in Xenopus oocyte model. Exposure of NEB cells to hydrogen peroxide (H2O2, the dismuted by-product of the oxidase) under normoxia resulted in an increase of the outward K+ current indicating that H2O2 could be the transmitter modulating the O2-sensitive K+ channel. Expressed mRNAs or corresponding protein products for the NADPH oxidase membrane cytochrome b as well as mRNA encoding KV3.3a were identified in small cell lung carcinoma cell lines. The studies presented here provide strong evidence for an oxidase-O2 sensitive potassium channel molecular complex operating as an O2 sensor in NEB cells, which function as chemoreceptors in airways and in NEB related tumors. Such a complex may represent an evolutionary conserved biochemical link for a membrane bound O2-signaling mechanism proposed for other cells and life forms.

摘要

肺神经上皮小体(NEB)广泛分布于人和动物肺的气道黏膜中。基于NEB细胞具有候选氧传感器酶复合物(NADPH氧化酶)和氧敏感钾电流这一观察结果,有人提出NEB可能作为气道化学感受器发挥作用。在此我们报告,对过氧化氢敏感的电压门控钾通道亚基(KH2O2)KV3.3a的mRNA以及NADPH氧化酶的膜成分(gp91phox和p22phox)在胎兔和新生儿人肺的NEB细胞中共同表达。使用显微荧光测定法并以二氢罗丹明123作为探针来评估过氧化氢的生成,NEB细胞在基础条件下表现出氧化酶活性。NEB细胞中的氧化酶受到佛波酯(0.1微摩尔)刺激后显著增强,而受到二苯基碘鎓(5微摩尔)抑制。使用全细胞膜片钳的研究表明,培养的胎兔NEB细胞的钾电流表现出与非洲爪蟾卵母细胞模型中表达的KV3.3a转录本相似的失活特性。在常氧条件下,将NEB细胞暴露于过氧化氢(H2O2,氧化酶的歧化副产物)会导致外向钾电流增加,这表明H2O2可能是调节氧敏感钾通道的递质。在小细胞肺癌细胞系中鉴定出了NADPH氧化酶膜细胞色素b的表达mRNA或相应蛋白质产物以及编码KV3.3a的mRNA。本文的研究提供了有力证据,证明在NEB细胞中存在一种氧化酶 - 氧敏感钾通道分子复合物作为氧传感器发挥作用,NEB细胞在气道以及与NEB相关的肿瘤中作为化学感受器。这样一种复合物可能代表了为其他细胞和生命形式提出的膜结合氧信号传导机制的一种进化保守的生化联系。

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