Tomasinsig Linda, Pizzirani Cinzia, Skerlavaj Barbara, Pellegatti Patrizia, Gulinelli Sara, Tossi Alessandro, Di Virgilio Francesco, Zanetti Margherita
Department of Biomedical Sciences and Technology, University of Udine, 33100 Udine, Italy.
J Biol Chem. 2008 Nov 7;283(45):30471-81. doi: 10.1074/jbc.M802185200. Epub 2008 Sep 2.
Extracellular ATP, released at sites of inflammation or tissue damage, activates the P2X(7) receptor, which in turn triggers a range of responses also including cell proliferation. In this study the ability of the human cathelicidin LL-37 to stimulate fibroblast growth was inhibited by commonly used P2X(7) blockers. We investigated the structural requirements of the growth-promoting activity of LL-37 and found that it did not depend on helix sense (the all-d analog was active) but did require a strong helix-forming propensity in aqueous solution (a scrambled analog and primate LL-37 orthologs devoid of this property were inactive). The involvement of P2X(7) was analyzed using P2X(7)-expressing HEK293 cells. LL-37 induced proliferation of these cells, triggered Ca(2+) influx, promoted ethidium bromide uptake, and synergized with benzoyl ATP to enhance the pore and channel functions of P2X(7). The activity of LL-37 had an absolute requirement for P2X(7) expression as it was blocked by the P2X(7) inhibitor KN-62, was absent in cells lacking P2X(7), and was restored by P2X(7) transfection. Of particular interest, LL-37 led to pore-forming activity in cells expressing a truncated P2X(7) receptor unable to generate the non-selective pore typical of the full-length receptor. Our results indicate that P2X(7) is involved in the proliferative cell response to LL-37 and that the structural/aggregational properties of LL-37 determine its capacity to modulate the activation state of P2X(7).
在炎症或组织损伤部位释放的细胞外ATP可激活P2X(7)受体,进而引发一系列反应,其中也包括细胞增殖。在本研究中,常用的P2X(7)阻滞剂抑制了人cathelicidin LL-37刺激成纤维细胞生长的能力。我们研究了LL-37促生长活性的结构要求,发现其并不依赖于螺旋方向(全d型类似物具有活性),但确实需要在水溶液中有很强的形成螺旋的倾向(一种无规类似物和缺乏此特性的灵长类LL-37直系同源物无活性)。使用表达P2X(7)的HEK293细胞分析了P2X(7)的参与情况。LL-37诱导这些细胞增殖,引发Ca(2+)内流,促进溴化乙锭摄取,并与苯甲酰ATP协同作用以增强P2X(7)的孔道和通道功能。LL-37的活性对P2X(7)的表达有绝对需求,因为它被P2X(7)抑制剂KN-62阻断,在缺乏P2X(7)的细胞中不存在,并且通过P2X(7)转染得以恢复。特别有趣的是,LL-37在表达截短型P2X(7)受体的细胞中导致成孔活性,该受体无法产生全长受体典型的非选择性孔道。我们的结果表明,P2X(7)参与了对LL-37的增殖性细胞反应,并且LL-37的结构/聚集特性决定了其调节P2X(7)激活状态的能力。