Interleukin-1 β regulation of fibroblast proteoglycan synthesis involves a decrease in versican steady-state mRNA levels

Author:

Qwarnström E E1,Järveläinen H T1,Kinsella M G1,Ostberg C O1,Sandell L J23,Page R C1,Wight T N1

Affiliation:

1. Departments of Pathology, School of Medicine, University of Washington, Seattle, WA 98195, U.S.A.

2. Departments of Orthopaedics, School of Medicine, University of Washington, Seattle, WA 98195, U.S.A.

3. Departments of Biochemistry, School of Medicine, University of Washington, Seattle, WA 98195, U.S.A.

Abstract

This study investigates the effects of interleukin (IL)-1 beta on proteoglycan metabolism by fibroblasts surrounded by endogenous extracellular matrix. In both three-dimensional matrix cultures and long-term monolayer cultures IL-1 beta caused a significant decrease in synthesis and deposition of sulphated proteoglycans, but had no effect on release of deposited material. The decrease in synthesis became successively more pronounced, and corresponded to 40-60% of the control after 72 h incubation. The reduction was almost totally accounted for by an effect on the chondroitin ABC-lyase-sensitive proteoglycans. Gel electrophoresis showed a significant decrease in a high-molecular-mass chondroitin ABC-lyase-sensitive proteoglycan after incubation with IL-1 beta. Northern-blot analyses of total RNA revealed a pronounced decrease in the steady-state mRNA levels of versican, the large chondroitin sulphate, with levels corresponding to 10-30% of controls. In comparison, the steady-state mRNA level for decorin, the major sulphated proteoglycan synthesized by the cells, was only slightly affected. The prominent decrease in synthesis of sulphated proteoglycans induced in long-term fibroblast cultures, including the pronounced decrease in versican steady-state mRNA levels, is likely to have a significant effect on the structure of the extracellular matrix. Induction of this type of change may constitute a significant mechanism whereby IL-1 beta can affect the properties of connective tissue during inflammation and wound healing.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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