Solle M, Labasi J, Perregaux D G, Stam E, Petrushova N, Koller B H, Griffiths R J, Gabel C A
Department of Respiratory, Allergy, Immunology, Inflammation, and Infectious Diseases, Pfizer Inc., Groton, Connecticut 06340, USA.
J Biol Chem. 2001 Jan 5;276(1):125-32. doi: 10.1074/jbc.M006781200.
The P2X(7) receptor (P2X(7)R) is an ATP-gated ion channel expressed by monocytes and macrophages. To directly address the role of this receptor in interleukin (IL)-1 beta post-translational processing, we have generated a P2X(7)R-deficient mouse line. P2X(7)R(-/-) macrophages respond to lipopolysaccharide and produce levels of cyclooxygenase-2 and pro-IL-1 beta comparable with those generated by wild-type cells. In response to ATP, however, pro-IL-1 beta produced by the P2X(7)R(-/-) cells is not externalized or activated by caspase-1. Nigericin, an alternate secretion stimulus, promotes release of 17-kDa IL-1 beta from P2X(7)R(-/-) macrophages. In response to in vivo lipopolysaccharide injection, both wild-type and P2X(7)R(-/-) animals display increases in peritoneal lavage IL-6 levels but no detectable IL-1. Subsequent ATP injection to wild-type animals promotes an increase in IL-1, which in turn leads to additional IL-6 production; similar increases did not occur in ATP-treated, LPS-primed P2X(7)R(-/-) animals. Absence of the P2X(7)R thus leads to an inability of peritoneal macrophages to release IL-1 in response to ATP. As a result of the IL-1 deficiency, in vivo cytokine signaling cascades are impaired in P2X(7)R-deficient animals. Together these results demonstrate that P2X(7)R activation can provide a signal that leads to maturation and release of IL-1 beta and initiation of a cytokine cascade.
P2X(7)受体(P2X(7)R)是一种由单核细胞和巨噬细胞表达的ATP门控离子通道。为了直接研究该受体在白细胞介素(IL)-1β翻译后加工中的作用,我们构建了一种P2X(7)R基因敲除小鼠品系。P2X(7)R(-/-)巨噬细胞对脂多糖有反应,并产生与野生型细胞相当水平的环氧化酶-2和前体IL-1β。然而,在ATP刺激下,P2X(7)R(-/-)细胞产生的前体IL-1β不会被半胱天冬酶-1外化或激活。尼日利亚菌素,一种替代分泌刺激物,可促进P2X(7)R(-/-)巨噬细胞释放17-kDa的IL-1β。在体内注射脂多糖后,野生型和P2X(7)R(-/-)动物的腹腔灌洗IL-6水平均升高,但未检测到IL-1。随后对野生型动物注射ATP可促进IL-1增加,进而导致更多IL-6产生;在经ATP处理、LPS预刺激的P2X(7)R(-/-)动物中未出现类似增加。因此,P2X(7)R的缺失导致腹腔巨噬细胞无法响应ATP释放IL-1。由于IL-1缺乏,P2X(7)R基因敲除动物体内的细胞因子信号级联受损。这些结果共同表明,P2X(7)R激活可提供一个信号,导致IL-1β成熟和释放,并启动细胞因子级联反应。