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J. Exp. Med.
© The Rockefeller University Press
0022-1007/97/04/1287/08 $2.00
Volume 185, Number 7, April 7, 1997 1287-1294

Human Vascular Smooth Muscle Cells Express Interleukin-1beta -converting Enzyme (ICE), but Inhibit Processing of the Interleukin-1beta Precursor by ICE

By Uwe Schönbeck,* Mona Herzberg,* Arnd Petersen,Dagger Claudia Wohlenberg,* Johannes Gerdes,* Hans-Dieter Flad,* and Harald Loppnow*

From the * Department of Immunology and Cell Biology, and Dagger  Department of Clinical Medicine, Research Center Borstel, Center for Medicine and Biosciences, 23845 Borstel, Germany

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.


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