Involvement of ADAMTS5 and hyaluronidase in aggrecan degradation and release from OSM-stimulated cartilage.

The relative contribution of a disintegrin and metalloproteinase with thrombospondin motifs (ADAMTS)4 and ADAMTS5 to aggrecan degradation under oncostatin M (OSM) stimulation, the role of the ancillary domains of the aggrecanases on their ability to cleave within the chondroitin sulfate (CS)-2 regio...

Full description

Bibliographic Details
Main Authors: Durigova, M, Troeberg, L, Nagase, H, Roughley, P, Mort, J
Format: Journal article
Language:English
Published: 2011
_version_ 1797059915602198528
author Durigova, M
Troeberg, L
Nagase, H
Roughley, P
Mort, J
author_facet Durigova, M
Troeberg, L
Nagase, H
Roughley, P
Mort, J
author_sort Durigova, M
collection OXFORD
description The relative contribution of a disintegrin and metalloproteinase with thrombospondin motifs (ADAMTS)4 and ADAMTS5 to aggrecan degradation under oncostatin M (OSM) stimulation, the role of the ancillary domains of the aggrecanases on their ability to cleave within the chondroitin sulfate (CS)-2 region, the role of hyaluronidases (HYAL) in stimulating aggrecan release in the absence of proteolysis, and the identity of the hyaluronidase involved in OSM-mediated cartilage breakdown were investigated. Bovine articular cartilage explants were cultured in the presence of interleukin-1beta (IL-1beta), tumor necrosis factor alpha (TNFalpha) and/or OSM, or treated with trypsin and/or hyaluronidase. Aggrecan was digested with various domain-truncated isoforms of ADAMTS4 and ADAMTS5. Aggrecan and link protein degradation and release were analyzed by immunoblotting. Aggrecanase and HYAL gene expression were determined. ADAMTS4 was the most inducible aggrecanase upon cytokine stimulation, whereas ADAMTS5 was the most abundant aggrecanase. ADAMTS5 was the most active aggrecanase and was responsible for the generation of an OSM-specific degradation pattern in the CS-2 region. Its ability to cleave at the OSM-specific site adjacent to the aggrecan G3 region was enhanced by truncation of the C-terminal thrombospondin domain, but reduced by further truncation of both the spacer and cysteine-rich domains of the enzyme. OSM has the ability to mediate proteoglycan release through hyaluronan degradation, under conditions where HYAL-2 is the predominant hyaluronidase being expressed. Compared to other catabolic cytokines, OSM exhibits a unique potential at degrading the proteoglycan aggregate, by promoting early robust aggrecanolysis, primarily through the action of ADAMTS5, and hyaluronan degradation.
first_indexed 2024-03-06T20:10:50Z
format Journal article
id oxford-uuid:2a826c35-5029-45e7-9606-5bc75d376b24
institution University of Oxford
language English
last_indexed 2024-03-06T20:10:50Z
publishDate 2011
record_format dspace
spelling oxford-uuid:2a826c35-5029-45e7-9606-5bc75d376b242022-03-26T12:25:28ZInvolvement of ADAMTS5 and hyaluronidase in aggrecan degradation and release from OSM-stimulated cartilage.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:2a826c35-5029-45e7-9606-5bc75d376b24EnglishSymplectic Elements at Oxford2011Durigova, MTroeberg, LNagase, HRoughley, PMort, JThe relative contribution of a disintegrin and metalloproteinase with thrombospondin motifs (ADAMTS)4 and ADAMTS5 to aggrecan degradation under oncostatin M (OSM) stimulation, the role of the ancillary domains of the aggrecanases on their ability to cleave within the chondroitin sulfate (CS)-2 region, the role of hyaluronidases (HYAL) in stimulating aggrecan release in the absence of proteolysis, and the identity of the hyaluronidase involved in OSM-mediated cartilage breakdown were investigated. Bovine articular cartilage explants were cultured in the presence of interleukin-1beta (IL-1beta), tumor necrosis factor alpha (TNFalpha) and/or OSM, or treated with trypsin and/or hyaluronidase. Aggrecan was digested with various domain-truncated isoforms of ADAMTS4 and ADAMTS5. Aggrecan and link protein degradation and release were analyzed by immunoblotting. Aggrecanase and HYAL gene expression were determined. ADAMTS4 was the most inducible aggrecanase upon cytokine stimulation, whereas ADAMTS5 was the most abundant aggrecanase. ADAMTS5 was the most active aggrecanase and was responsible for the generation of an OSM-specific degradation pattern in the CS-2 region. Its ability to cleave at the OSM-specific site adjacent to the aggrecan G3 region was enhanced by truncation of the C-terminal thrombospondin domain, but reduced by further truncation of both the spacer and cysteine-rich domains of the enzyme. OSM has the ability to mediate proteoglycan release through hyaluronan degradation, under conditions where HYAL-2 is the predominant hyaluronidase being expressed. Compared to other catabolic cytokines, OSM exhibits a unique potential at degrading the proteoglycan aggregate, by promoting early robust aggrecanolysis, primarily through the action of ADAMTS5, and hyaluronan degradation.
spellingShingle Durigova, M
Troeberg, L
Nagase, H
Roughley, P
Mort, J
Involvement of ADAMTS5 and hyaluronidase in aggrecan degradation and release from OSM-stimulated cartilage.
title Involvement of ADAMTS5 and hyaluronidase in aggrecan degradation and release from OSM-stimulated cartilage.
title_full Involvement of ADAMTS5 and hyaluronidase in aggrecan degradation and release from OSM-stimulated cartilage.
title_fullStr Involvement of ADAMTS5 and hyaluronidase in aggrecan degradation and release from OSM-stimulated cartilage.
title_full_unstemmed Involvement of ADAMTS5 and hyaluronidase in aggrecan degradation and release from OSM-stimulated cartilage.
title_short Involvement of ADAMTS5 and hyaluronidase in aggrecan degradation and release from OSM-stimulated cartilage.
title_sort involvement of adamts5 and hyaluronidase in aggrecan degradation and release from osm stimulated cartilage
work_keys_str_mv AT durigovam involvementofadamts5andhyaluronidaseinaggrecandegradationandreleasefromosmstimulatedcartilage
AT troebergl involvementofadamts5andhyaluronidaseinaggrecandegradationandreleasefromosmstimulatedcartilage
AT nagaseh involvementofadamts5andhyaluronidaseinaggrecandegradationandreleasefromosmstimulatedcartilage
AT roughleyp involvementofadamts5andhyaluronidaseinaggrecandegradationandreleasefromosmstimulatedcartilage
AT mortj involvementofadamts5andhyaluronidaseinaggrecandegradationandreleasefromosmstimulatedcartilage