Schönbeck U, Herzberg M, Petersen A, Wohlenberg C, Gerdes J, Flad H D, Loppnow H
Department of Immunology and Cell Biology, Research Center Borstel, Center for Medicine and Biosciences, Germany.
J Exp Med. 1997 Apr 7;185(7):1287-94. doi: 10.1084/jem.185.7.1287.
Local immunoregulatory processes during normal vascular biology or pathogenesis are mediated in part by the production of and response to cytokines by vessel wall cells. Among these cytokines interleukin (IL)-1 is considered to be of major importance. Although vascular smooth muscle (SMC) and endothelial cells (EC) expressed both IL-1alpha and IL-1beta as cell-associated, 33-kilodalton (kD) precursors, SMC neither contained detectable mature IL-1beta, nor processed recombinant IL-1beta precursor into its mature 17-kD form. Thus, we investigated the expression and function of IL-1beta-converting enzyme (ICE) in vascular cells. We demonstrate in processing experiments with recombinant IL-1 precursor molecules that EC processed IL-1beta, in contrast to SMC. Despite the failure of SMC to process IL-1beta, these cells expressed ICE mRNA, immunoreactive ICE protein, and the expected IL-1beta nucleotide sequence. The lack of processing was explained by our finding that extracts of SMC specifically and concentration dependently blocked processing of IL-1beta precursor by recombinant or native ICE. The initial biochemical characterization of the inhibitory activity showed that it is heat-labile, has a molecular size of 50-100 kD, and is associated to the cell membrane compartment. Inhibition of processing, i.e., activation of IL-1beta precursor by SMC may constitute a novel regulatory mechanism during normal vascular biology or pathogenesis of vascular diseases.
在正常血管生物学或发病机制过程中,局部免疫调节过程部分由血管壁细胞产生细胞因子并对其作出反应介导。在这些细胞因子中,白细胞介素(IL)-1被认为至关重要。尽管血管平滑肌(SMC)和内皮细胞(EC)均表达细胞相关的33千道尔顿(kD)前体形式的IL-1α和IL-1β,但SMC既不含有可检测到的成熟IL-1β,也不将重组IL-1β前体加工成其成熟的17-kD形式。因此,我们研究了血管细胞中IL-1β转换酶(ICE)的表达和功能。我们在对重组IL-1前体分子进行的加工实验中证明,与SMC不同,EC能够加工IL-1β。尽管SMC无法加工IL-1β,但这些细胞表达ICE mRNA、免疫反应性ICE蛋白以及预期的IL-1β核苷酸序列。我们发现SMC提取物特异性且浓度依赖性地阻断重组或天然ICE对IL-1β前体的加工,这解释了为何缺乏加工过程。对抑制活性的初步生化特性分析表明,它不耐热,分子大小为50-100 kD,且与细胞膜区室相关。SMC对加工的抑制,即对IL-1β前体的激活,可能构成正常血管生物学或血管疾病发病机制中的一种新型调节机制。