Am. J. Respir. Cell Mol. Biol., Vol 16, No. 6, 06 1997, 683-692.
Induction of urokinase-type plasminogen activator receptor by IL-1 beta
T Hasegawa, L Sorensen, M Dohi, NV Rao, JR Hoidal and BC Marshall
Salt Lake Veterans Administration Medical Center, Salt Lake City, Utah, USA.
Extensive tissue remodeling occurs in survivors of acute lung injury,
leading to nearly normal histology and physiology in the majority of
individuals, whereas others suffer significant impairment due to the
development of pulmonary fibrosis. Alveolar epithelial cells play a central
role in the repair process. They are strategically located to directly
participate in the solubilization of intraalveolar fibrin deposits, and
have the capacity to promote fibrinolysis. We have previously reported that
interleukin-1 beta (IL-1 beta), an important inflammatory mediator in acute
lung injury, upregulates urokinase-type plasminogen activator expression by
human A549 cells (1). In this work, we show that IL-1 beta increases
cell-surface plasmin generation, mediated in part by increased expression
of urokinase receptor (u-PAR). Northern blot analyses demonstrated that
IL-1 beta rapidly induces accumulation of u-PAR messenger RNA (mRNA) in a
dose-dependent fashion, and that this effect is blocked by actinomycin. The
IL-1 beta-mediated increase in u-PAR mRNA is inhibited by: (1) the
relatively specific protein kinase C (PKC) inhibitors 1-(5-isoquinoline
sulfonyl)-2- methylpiperazine (H7) and calphostin C; and (2) prolonged
pretreatment of cells with phorbol myristate acetate (PMA), suggesting that
PKC is an important component of the signaling pathway. Okadaic acid, an
inhibitor of serine/threonine phosphatases, markedly potentiates the effect
of IL-1 beta on u-PAR mRNA levels. In contrast, dexamethasone, in
concentrations as low as 10(-8) M, completely blocks the IL-1 beta-
mediated increase in u-PAR mRNA. Half-life experiments show that
dexamethasone has no effect on u-PAR mRNA stability. Aldosterone, at
concentrations in which it binds primarily to the mineralocorticoid
receptor, has no effect on u-PAR expression, suggesting that the
glucocorticoid effect is due to a transrepressive mechanism. In summary,
IL-1 beta increases cell-surface plasmin generation in A549 cells by
coordinately upregulating urokinase and u-PAR expression. Transcriptional
activation of the u-PAR gene involves PKC-dependent mechanisms, and
glucocorticoid suppression is probably due to interactions between the
glucocorticoid receptor and another transcriptional activating system such
as activator protein-1 (AP-1) and/or nuclear factor-kB (NF-kB).
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Copyright © 1997 American Thoracic Society.
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