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Cloning and characterization of ADAMTS11, an aggrecanase from the ADAMTS family.

Authors :
Abbaszade I
Liu RQ
Yang F
Rosenfeld SA
Ross OH
Link JR
Ellis DM
Tortorella MD
Pratta MA
Hollis JM
Wynn R
Duke JL
George HJ
Hillman MC Jr
Murphy K
Wiswall BH
Copeland RA
Decicco CP
Bruckner R
Nagase H
Itoh Y
Newton RC
Magolda RL
Trzaskos JM
Burn TC
Source :
The Journal of biological chemistry [J Biol Chem] 1999 Aug 13; Vol. 274 (33), pp. 23443-50.
Publication Year :
1999

Abstract

Aggrecan is responsible for the mechanical properties of cartilage. One of the earliest changes observed in arthritis is the depletion of cartilage aggrecan due to increased proteolytic cleavage within the interglobular domain. Two major sites of cleavage have been identified in this region at Asn(341)-Phe(342) and Glu(373)-Ala(374). While several matrix metalloproteinases have been shown to cleave at Asn(341)-Phe(342), an as yet unidentified protein termed "aggrecanase" is responsible for cleavage at Glu(373)-Ala(374) and is hypothesized to play a pivotal role in cartilage damage. We have identified and cloned a novel disintegrin metalloproteinase with thrombospondin motifs that possesses aggrecanase activity, ADAMTS11 (aggrecanase-2), which has extensive homology to ADAMTS4 (aggrecanase-1) and the inflammation-associated gene ADAMTS1. ADAMTS11 possesses a number of conserved domains that have been shown to play a role in integrin binding, cell-cell interactions, and extracellular matrix binding. We have expressed recombinant human ADAMTS11 in insect cells and shown that it cleaves aggrecan at the Glu(373)-Ala(374) site, with the cleavage pattern and inhibitor profile being indistinguishable from that observed with native aggrecanase. A comparison of the structure and expression patterns of ADAMTS11, ADAMTS4, and ADAMTS1 is also described. Our findings will facilitate the study of the mechanisms of cartilage degradation and provide targets to search for effective inhibitors of cartilage depletion in arthritic disease.

Details

Language :
English
ISSN :
0021-9258
Volume :
274
Issue :
33
Database :
MEDLINE
Journal :
The Journal of biological chemistry
Publication Type :
Academic Journal
Accession number :
10438522
Full Text :
https://doi.org/10.1074/jbc.274.33.23443