Accomazzo M R, Rovati G E, Viganò T, Hernandez A, Bonazzi A, Bolla M, Fumagalli F, Viappiani S, Galbiati E, Ravasi S, Albertoni C, Di Luca M, Caputi A, Zannini P, Chiesa G, Villa A M, Doglia S M, Folco G, Nicosia S
Institute of Pharmacological Sciences, and Department of Biotechnology and Biosciences, University of Milan, Italy.
Am J Respir Crit Care Med. 2001 Jan;163(1):266-72. doi: 10.1164/ajrccm.163.1.9912019.
Cysteine-containing leukotrienes (cysteinyl-LTs) are potent bronchoconstrictors and play a key role in asthma. We found that histamine and LTD4 markedly constrict strips of human bronchi (HB) with similar efficacy. However, in human airway smooth-muscle (HASM) cells, LTD4, at variance with histamine, elicited only a small, transient change in intracellular calcium ion concentration. HASM cells express both Ca2+-dependent and -independent isoforms of protein kinase C (PKC) (i.e., PKC-alpha and PKC-alpha ). Western blot analysis showed that PKC-alpha is activated by histamine and, to a lesser extent, by LTD4, whereas only LTD4 translocates PKC-alpha. This translocation was specifically inhibited by the LTD4 antagonist pobilukast. Phorbol-dibutyrate ester (PDBu) (a PKC activator) contracted HB strips to the same extent in the presence as in the absence of extra- and intracellular Ca2+. In the absence of Ca2+, LTD4 contracted HB strips to the same extent as did PDBu, suggesting the involvement of a Ca2+-independent PKC in LTD4-mediated signal transduction. PDBu-induced desensitization and the PKC inhibitor H7 abolished the slow and sustained LTD4-triggered contraction of HB strips in the absence of Ca2+, although H7 did not greatly affect the response in the presence of the ion. Thus, in human airways, we identified a novel LTD4 transduction mechanism linked to bronchial smooth-muscle contraction, which is partly independent of Ca2+ and involves the activation of PKC-alpha.
含半胱氨酸的白三烯(半胱氨酰白三烯)是强效支气管收缩剂,在哮喘中起关键作用。我们发现组胺和白三烯D4(LTD4)能以相似的效力使人类支气管(HB)条显著收缩。然而,在人气道平滑肌(HASM)细胞中,与组胺不同,LTD4仅引起细胞内钙离子浓度的微小短暂变化。HASM细胞表达蛋白激酶C(PKC)的钙依赖性和非依赖性同工型(即PKC-α和PKC-α)。蛋白质印迹分析表明,PKC-α被组胺激活,且在较小程度上被LTD4激活,而只有LTD4能使PKC-α易位。LTD4拮抗剂泊比司特可特异性抑制这种易位。佛波酯(PDBu)(一种PKC激活剂)在细胞外和细胞内钙存在与不存在的情况下,使HB条收缩程度相同。在无钙情况下,LTD4使HB条收缩程度与PDBu相同,提示非钙依赖性PKC参与LTD4介导的信号转导。PDBu诱导的脱敏和PKC抑制剂H7消除了无钙情况下LTD4触发的HB条缓慢而持续的收缩,尽管H7在有钙离子存在时对反应影响不大。因此,在人类气道中,我们确定了一种与支气管平滑肌收缩相关的新型LTD4转导机制,该机制部分独立于钙离子且涉及PKC-α的激活。