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大鼠呼吸道纤毛上皮中一氧化氮-环磷酸鸟苷信号通路的免疫组化证据

Immunohistochemical evidence for the NO cGMP signaling pathway in respiratory ciliated epithelia of rat.

作者信息

Zhan X, Li D, Johns R A

机构信息

Department of Anesthesiology, University of Virginia Health System, Charlottesville, Virginia, USA.

出版信息

J Histochem Cytochem. 1999 Nov;47(11):1369-74. doi: 10.1177/002215549904701103.

Abstract

Airway epithelia play a crucial role in protecting the lung from the external environment. Ciliated airway epithelial cells contribute to mucociliary transport systems via ciliary beating and electrolyte transport mechanisms to defend against respiratory tract infection. Both of these activities are regulated by nitric oxide (NO)-dependent mechanisms. To better understand the role of the NO-cGMP signal transduction cascade in these responses, we investigated the localization of endothelial nitric oxide synthase (eNOS), soluble guanylyl cyclase (sGC), cGMP-dependent protein kinase (PKG) I-alpha, and PKG I-beta in the tracheas and lungs of normal rats by immunohistochemistry. Mouse anti-eNOS, rabbit anti-sGC, PKG I-alpha, and PKG I-beta antibodies were used. Strong immunostaining for eNOS was detected in ciliated tracheal, bronchial, and bronchiolar epithelia, in Clara cells, and in Type II alveolar cells. The pattern of sGC and PKG I-beta immunostaining showed striking parallels with that of eNOS staining. No staining was detectable in ciliated epithelium with the anti-PKG I-alpha antibody. Taken together, these observations suggest that PKG I-beta might transduce NO-sGC signaling into biological responses in ciliated respiratory epithelia.(J Histochem Cytochem 47:1369-1374, 1999)

摘要

气道上皮在保护肺部免受外界环境影响方面起着至关重要的作用。纤毛气道上皮细胞通过纤毛摆动和电解质转运机制参与黏液纤毛转运系统,以抵御呼吸道感染。这两种活动均受一氧化氮(NO)依赖性机制调控。为了更好地理解NO - cGMP信号转导级联在这些反应中的作用,我们通过免疫组织化学研究了正常大鼠气管和肺中内皮型一氧化氮合酶(eNOS)、可溶性鸟苷酸环化酶(sGC)、cGMP依赖性蛋白激酶(PKG)I - α和PKG I - β的定位。使用了小鼠抗eNOS、兔抗sGC、PKG I - α和PKG I - β抗体。在纤毛气管、支气管和细支气管上皮细胞、克拉拉细胞以及Ⅱ型肺泡细胞中检测到eNOS的强免疫染色。sGC和PKG I - β的免疫染色模式与eNOS染色模式显著相似。用抗PKG I - α抗体在纤毛上皮中未检测到染色。综上所述,这些观察结果表明PKG I - β可能将NO - sGC信号转导为纤毛呼吸道上皮中的生物学反应。(《组织化学与细胞化学杂志》47:1369 - 1374,1999)

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