Inhibition of bovine nasal cartilage degradation by selective matrix metalloproteinase inhibitors

Author:

BOTTOMLEY Kevin M.1,BORKAKOTI Neera1,BRADSHAW David1,BROWN Paul A.1,BROADHURST Michael J.1,BUDD John M.1,ELLIOTT Lucy1,EYERS Pat1,HALLAM Trevor J.1,HANDA Balraj K.1,HILL Christopher H.1,JAMES Maisie1,LAHM Hans-Werner2,LAWTON Geoffrey1,MERRITT Janet E.1,NIXON John S.1,RÖTHLISBERGER Urs2,WHITTLE Amanda1,JOHNSON William H.1

Affiliation:

1. Roche Discovery Welwyn, Broadwater Road, Welwyn Garden City, Herts, AL7 3AY, U.K.

2. F. Hoffmann–La Roche AG, CH-4070, Basel, Switzerland

Abstract

N-terminal analysis of aggrecan fragments lost from bovine nasal cartilage cultured in the presence of recombinant human interleukin 1α revealed a predominant ARGSVIL sequence with an additional ADLEX sequence. Production of the ARGSVIL-containing fragments has been attributed to the action of a putative proteinase, aggrecanase. The minor sequence (ADLEX) corresponds to a new reported cleavage product; comparison of this sequence with the available partial sequence of bovine aggrecan indicates that this is the product of a cleavage occurring towards the C-terminus of the protein. Matrix metalloproteinase (MMP) inhibitors inhibited aggrecan loss from bovine nasal explants incubated in the presence of recombinant human interleukin 1α. A strong correlation between inhibition of aggrecan metabolism and inhibition of stromelysin 1 (MMP 3) (r = 0.93) suggests a role for stromelysin or a stromelysin-like enzyme in cartilage aggrecan metabolism. However, the compounds were approx. 1/1000 as potent in inhibiting aggrecan loss from the cartilage explants as they were in inhibiting stromelysin. There was little or no correlation between inhibition of aggrecan metabolism and inhibition of gelatinase B (MMP 9) or inhibition of collagenase 1 (MMP 1). Studies with collagenase inhibitors with a range of potencies showed a correlation between inhibition of collagenase activity and inhibition of collagen degradation in the cartilage explant assay. This indicates that in interleukin 1α-driven bovine nasal cartilage destruction, stromelysin (or a closely related enzyme) is involved in aggrecan metabolism, whereas collagenase is principally responsible for collagen degradation.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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