Purinergic stimulation of human airway epithelia results in a prolonged increase in ciliary beat frequency that depends on calcium-mediated cAMP production [Lieb, T., Wijkstrom Frei, C., Frohock, J.I., Bookman, R.J. and Salathe, M. (2002) Prolonged increase in ciliary beat frequency after short-term purinergic stimulation in human airway epithelial cells. J. Physiol. (Lond.) 538, 633-646]. Here, fully differentiated human airway epithelial cells in culture are shown to express calcium-stimulated transmembrane adenylyl cyclase (tmAC) isoforms (types 1, 3, and 8) by reverse transcription polymerase chain reaction. Immunohistochemistry of tracheal sections and fully differentiated airway epithelial cell cultures revealed polarized expression of these tmACs, with types 1 and 8 localized to the apical membrane and thus at the position required for ciliary regulation. Real-time, ciliated-cell specific cAMP production by tmACs upon apical, purinergic stimulation with UTP was confirmed using fluorescent energy resonance transfer between fluorescently tagged PKA subunits.

译文

嘌呤能刺激人气道上皮细胞导致睫状搏动频率的延长增加,这取决于钙介导的cAMP产生 [Lieb,T.,Wijkstrom Frei,C.,Frohock,J.I.,Bookman,r.j.和salate,M. (2002) 人气道上皮细胞短期嘌呤能刺激后睫状搏动频率的延长增加。J. Physiol。(Lond。) 538,633-646]。在这里,通过逆转录聚合酶链反应显示培养物中完全分化的人气道上皮细胞表达钙刺激的跨膜腺苷酸环化酶 (tmAC) 亚型 (1、3和8型)。气管切片和完全分化的气道上皮细胞培养物的免疫组织化学显示这些tmac的极化表达,其中1型和8型位于根尖膜上,因此位于纤毛调节所需的位置。使用荧光标记的PKA亚基之间的荧光能量共振转移,证实了tmACs在UTP的顶端,嘌呤能刺激下实时,纤毛细胞特异性cAMP的产生。

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