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  1. Book: ADAMTS proteases

    Apte, Suneel S.

    methods and protocols

    (Methods in molecular biology ; 2043 ; Springer protocols)

    2020  

    Author's details edited by Suneel S. Apte
    Series title Methods in molecular biology ; 2043
    Springer protocols
    Collection
    Language English
    Size x, 299 Seiten, Illustrationen
    Publisher Humana Press
    Publishing place New York, NY
    Publishing country United States
    Document type Book
    HBZ-ID HT020199742
    ISBN 978-1-4939-9697-1 ; 9781493996988 ; 1-4939-9697-5 ; 1493996983
    Database Catalogue ZB MED Medicine, Health

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  2. Article ; Online: Beyond the matrisome: New frontiers in ECM research.

    Apte, Suneel S / Naba, Alexandra

    Matrix biology : journal of the International Society for Matrix Biology

    2022  Volume 115, Page(s) 133–138

    MeSH term(s) Extracellular Matrix ; Extracellular Matrix Proteins
    Chemical Substances Extracellular Matrix Proteins
    Language English
    Publishing date 2022-12-24
    Publishing country Netherlands
    Document type Editorial
    ZDB-ID 1183793-7
    ISSN 1569-1802 ; 0945-053X
    ISSN (online) 1569-1802
    ISSN 0945-053X
    DOI 10.1016/j.matbio.2022.12.003
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  3. Article ; Online: Emerging roles for the ADAMTS-like family of matricellular proteins in cardiovascular disease through regulation of the extracellular microenvironment.

    Rypdal, Karoline Bjarnesdatter / Apte, Suneel S / Lunde, Ida G

    Molecular biology reports

    2024  Volume 51, Issue 1, Page(s) 280

    Abstract: Dysregulation of the extracellular matrix (ECM) occurs widely across cardiovascular pathologies. Recent work has revealed important roles for the «a disintegrin-like and metalloprotease domain with thrombospondin-type 1 motifs like" (ADAMTSL) family of ... ...

    Abstract Dysregulation of the extracellular matrix (ECM) occurs widely across cardiovascular pathologies. Recent work has revealed important roles for the «a disintegrin-like and metalloprotease domain with thrombospondin-type 1 motifs like" (ADAMTSL) family of secreted glycoproteins in cardiovascular tissues during development and disease. Key insights in this regard have come from naturally occurring gene mutations in humans and animals that result in severe diseases with cardiovascular manifestations or aortopathies. Expression of ADAMTSL genes is greatly increased in the myocardium during heart failure. Genetically modified mice recapitulate phenotypes of patients with ADAMTSL mutations and demonstrate important functions in the ECM. The novel functions thus disclosed are intriguing because, while these proteins are neither structural, nor proteases like the related ADAMTS proteases, they appear to act as regulatory, i.e., matricellular proteins. Evidence from genetic variants, genetically engineered mouse mutants, and in vitro investigations have revealed regulatory functions of ADAMTSLs related to fibrillin microfibrils and growth factor signaling. Interestingly, the ability to regulate transforming growth factor (TGF)β signaling may be a shared characteristic of some ADAMTSLs. TGFβ signaling is important in cardiovascular development, health and disease and a central driver of ECM remodeling and cardiac fibrosis. New strategies to target dysregulated TGFβ signaling are warranted in aortopathies and cardiac fibrosis. With their emerging roles in cardiovascular tissues, the ADAMTSL proteins may provide causative genes, diagnostic biomarkers and novel treatment targets in cardiovascular disease. Here, we discuss the relevance of ADAMTSLs to cardiovascular medicine.
    MeSH term(s) Humans ; Animals ; Mice ; Cardiovascular Diseases ; Metalloendopeptidases ; Heart Failure ; Transcription Factors ; Fibrosis ; Transforming Growth Factor beta
    Chemical Substances Metalloendopeptidases (EC 3.4.24.-) ; Transcription Factors ; Transforming Growth Factor beta
    Language English
    Publishing date 2024-02-07
    Publishing country Netherlands
    Document type Journal Article ; Review
    ZDB-ID 186544-4
    ISSN 1573-4978 ; 0301-4851
    ISSN (online) 1573-4978
    ISSN 0301-4851
    DOI 10.1007/s11033-024-09255-5
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  4. Article ; Online: ADAMTS Proteins: Concepts, Challenges, and Prospects.

    Apte, Suneel S

    Methods in molecular biology (Clifton, N.J.)

    2019  Volume 2043, Page(s) 1–12

    Abstract: The ADAMTS superfamily comprises secreted metalloproteases (ADAMTS proteases) as well as structurally related secreted glycoproteins that lack catalytic activity (ADAMTS-like proteins). Members of both families participate in diverse morphogenetic ... ...

    Abstract The ADAMTS superfamily comprises secreted metalloproteases (ADAMTS proteases) as well as structurally related secreted glycoproteins that lack catalytic activity (ADAMTS-like proteins). Members of both families participate in diverse morphogenetic processes during embryonic development, and connective tissue maintenance and hemostasis in the adult. Several ADAMTS proteins are heavily implicated in genetic and acquired human and animal disorders. Despite these indicators of a profound biological and medical importance, detailed knowledge about their molecular structures, substrates, biological pathways, and biochemical mechanisms is significantly limited by unique intrinsic characteristics, which have led to several technical challenges. As a group, they are larger, more heavily modified, and harder to purify than other secreted proteases. In addition, idiosyncratic aspects of individual members are deserving of further investigation but can complicate their analysis. Here, some of the key concepts, challenges, and prospects in ADAMTS research are discussed in the context of the knowledge accumulated over the past two decades. Individual chapters in this volume of Methods in Molecular Biology provide practical solutions for surmounting these challenges. Since the biology of a protease is actually the biology of its substrates, there is considerable emphasis on purification of recombinant ADAMTS proteins, identification of their substrates and assays for their proteolytic activity.
    MeSH term(s) ADAMTS Proteins/isolation & purification ; ADAMTS Proteins/metabolism ; Animals ; Humans ; Mice ; Proteolysis ; Substrate Specificity
    Chemical Substances ADAMTS Proteins (EC 3.4.24.-)
    Language English
    Publishing date 2019-08-28
    Publishing country United States
    Document type Journal Article ; Research Support, N.I.H., Extramural ; Research Support, Non-U.S. Gov't ; Review
    ISSN 1940-6029
    ISSN (online) 1940-6029
    DOI 10.1007/978-1-4939-9698-8_1
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  5. Article ; Online: Anti-ADAMTS5 monoclonal antibodies: implications for aggrecanase inhibition in osteoarthritis.

    Apte, Suneel S

    The Biochemical journal

    2016  Volume 473, Issue 1, Page(s) e1–4

    Abstract: The extracellular matrix of articular cartilage is structurally specialized for efficient absorption of mechanical impact. In particular, giant aggregates of the large chondroitin sulfate proteoglycan, aggrecan, with the glycosaminoglycan, hyaluronan, ... ...

    Abstract The extracellular matrix of articular cartilage is structurally specialized for efficient absorption of mechanical impact. In particular, giant aggregates of the large chondroitin sulfate proteoglycan, aggrecan, with the glycosaminoglycan, hyaluronan, allow cartilage to resist compressive load. Proteolysis of aggrecan by members of the proteinase family ADAMTS (A disintegrin-like and metalloproteinase domain with thrombospondin type 1 motif), was identified as an early step in the inexorable destruction of cartilage in osteoarthritis (OA). Of the investigated proteinases, ADAMTS5 has emerged as a principal mediator of aggrecan loss in OA, convincingly so in mouse models, and with high probability in humans. ADAMTS5 has a bipartite organization, comprising a proteinase domain and an ancillary domain containing exosites for interaction with aggrecan and other substrates. In a recent issue of this journal, Santamaria et al. characterized anti-ADAMTS5 monoclonal antibodies isolated from a phage display library. By blocking the catalytic site of the ADAMTS5 immunogen with a synthetic inhibitor, the authors of the paper biased selection of antibodies to the ancillary domain. This work, together with other antibodies targeting ADAMTS5, offers diverse, high-affinity and, as far as can be determined, selective aggrecanase inhibitors. Mapping of their epitopes provided novel insights into ADAMTS5 interactions with aggrecan. These monoclonal antibodies deserve continued investigation for potential arthritis therapy, although their successful use will require a comprehensive understanding of the physiological roles of ADAMTS5, and its regulation, intrinsic properties and intermolecular interactions.
    MeSH term(s) ADAM Proteins/antagonists & inhibitors ; ADAM Proteins/immunology ; ADAMTS5 Protein ; Animals ; Antibodies, Monoclonal/immunology ; Endopeptidases/metabolism ; Enzyme Inhibitors/pharmacology ; Enzyme Inhibitors/therapeutic use ; Humans ; Osteoarthritis/drug therapy ; Osteoarthritis/enzymology ; Osteoarthritis/immunology
    Chemical Substances Antibodies, Monoclonal ; Enzyme Inhibitors ; Endopeptidases (EC 3.4.-) ; ADAM Proteins (EC 3.4.24.-) ; ADAMTS5 Protein (EC 3.4.24.-) ; ADAMTS5 protein, human (EC 3.4.24.-) ; aggrecanase (EC 3.4.99.-)
    Language English
    Publishing date 2016-01-01
    Publishing country England
    Document type Journal Article ; Research Support, N.I.H., Extramural ; Review
    ZDB-ID 2969-5
    ISSN 1470-8728 ; 0006-2936 ; 0306-3275 ; 0264-6021
    ISSN (online) 1470-8728
    ISSN 0006-2936 ; 0306-3275 ; 0264-6021
    DOI 10.1042/BJ20151072
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  6. Article ; Online: Proteolysis: a key post-translational modification regulating proteoglycans.

    Mead, Timothy J / Bhutada, Sumit / Martin, Daniel R / Apte, Suneel S

    American journal of physiology. Cell physiology

    2022  Volume 323, Issue 3, Page(s) C651–C665

    Abstract: Proteoglycans are composite molecules comprising a protein backbone, i.e., the core protein, with covalently attached glycosaminoglycan chains of distinct chemical types. Most proteoglycans are secreted or attached to the cell membrane. Their specialized ...

    Abstract Proteoglycans are composite molecules comprising a protein backbone, i.e., the core protein, with covalently attached glycosaminoglycan chains of distinct chemical types. Most proteoglycans are secreted or attached to the cell membrane. Their specialized structures, binding properties, and biophysical attributes underlie diverse biological roles, which include modulation of tissue mechanics, cell adhesion, and the sequestration and regulated release of morphogens, growth factors, and cytokines. As an irreversible post-translational modification, proteolysis has a profound impact on proteoglycan function, abundance, and localization. Proteolysis is required for molecular maturation of some proteoglycans, clearance of extracellular matrix proteoglycans during tissue remodeling, generation of bioactive fragments from proteoglycans, and ectodomain shedding of cell-surface proteoglycans. Genetic evidence shows that proteoglycan core protein proteolysis is essential for diverse morphogenetic events during embryonic development. In contrast, dysregulated proteoglycan proteolysis contributes to osteoarthritis, cardiovascular disorders, cancer, and inflammation. Proteolytic fragments of perlecan, versican, aggrecan, brevican, collagen XVIII, and other proteoglycans are associated with independent biological activities as so-called matrikines. Yet, proteoglycan proteolysis has been investigated to only a limited extent to date. Here, we review the actions of proteases on proteoglycans and illustrate their functional impact with several examples. We discuss the applications and limitations of strategies used to define cleavage sites in proteoglycans and explain how proteoglycanome-wide proteolytic mapping, which is desirable to fully understand the impact of proteolysis on proteoglycans, can be facilitated by integrating classical proteoglycan isolation methods with mass spectrometry-based proteomics.
    MeSH term(s) Aggrecans/metabolism ; Extracellular Matrix/metabolism ; Protein Processing, Post-Translational ; Proteolysis ; Versicans/metabolism
    Chemical Substances Aggrecans ; Versicans (126968-45-4)
    Language English
    Publishing date 2022-07-04
    Publishing country United States
    Document type Journal Article ; Review ; Research Support, Non-U.S. Gov't ; Research Support, N.I.H., Extramural
    ZDB-ID 392098-7
    ISSN 1522-1563 ; 0363-6143
    ISSN (online) 1522-1563
    ISSN 0363-6143
    DOI 10.1152/ajpcell.00215.2022
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  7. Article ; Online: Expression Analysis by RNAscope™ In Situ Hybridization.

    Mead, Timothy J / Apte, Suneel S

    Methods in molecular biology (Clifton, N.J.)

    2019  Volume 2043, Page(s) 173–178

    Abstract: RNA in situ hybridization has an important place in matrix biology, as the only method that allows for in situ discrimination of precise spatial and temporal patterns of gene expression. Whereas immunohistochemistry shows where a matrix protein localizes, ...

    Abstract RNA in situ hybridization has an important place in matrix biology, as the only method that allows for in situ discrimination of precise spatial and temporal patterns of gene expression. Whereas immunohistochemistry shows where a matrix protein localizes, ISH identifies the cell of origin. Thus, these methods provide complementary information for insights on the life cycle of matrix molecules, including ADAMTS proteases. This protocol encompasses the staining of tissue sections to reveal expression of the gene of interest.
    MeSH term(s) ADAMTS Proteins/genetics ; Animals ; Gene Expression ; In Situ Hybridization/methods ; Indicators and Reagents ; Mice ; RNA, Messenger/genetics
    Chemical Substances Indicators and Reagents ; RNA, Messenger ; ADAMTS Proteins (EC 3.4.24.-)
    Language English
    Publishing date 2019-08-28
    Publishing country United States
    Document type Journal Article
    ISSN 1940-6029
    ISSN (online) 1940-6029
    DOI 10.1007/978-1-4939-9698-8_14
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  8. Article ; Online: Visualization and Quantification of Pericellular Matrix.

    Mead, Timothy J / Apte, Suneel S

    Methods in molecular biology (Clifton, N.J.)

    2019  Volume 2043, Page(s) 261–264

    Abstract: The pericellular matrix (PCM), also known as the pericellular coat or glycocalyx, lies between the plasma membrane and the interstitial extracellular matrix (ECM). It can have a dramatic influence on cell function because of its presence at the interface ...

    Abstract The pericellular matrix (PCM), also known as the pericellular coat or glycocalyx, lies between the plasma membrane and the interstitial extracellular matrix (ECM). It can have a dramatic influence on cell function because of its presence at the interface between the cell and its microenvironment. A common tool used to demonstrate the PCM is the particle exclusion assay in which fixed red blood cells are utilized to outline the boundary of the cell together with its PCM. PCM visualization and quantification provide opportunities to uncover the roles of ADAMTS proteases in PCM remodeling in many cell types and processes.
    MeSH term(s) Cell Membrane/ultrastructure ; Cells, Cultured ; Extracellular Matrix/ultrastructure ; Humans ; Male ; Microscopy, Fluorescence ; Myocytes, Smooth Muscle/ultrastructure ; Software
    Language English
    Publishing date 2019-08-28
    Publishing country United States
    Document type Journal Article
    ISSN 1940-6029
    ISSN (online) 1940-6029
    DOI 10.1007/978-1-4939-9698-8_21
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  9. Article ; Online: Isolation and Purification of Versican and Analysis of Versican Proteolysis.

    Foulcer, Simon J / Day, Anthony J / Apte, Suneel S

    Methods in molecular biology (Clifton, N.J.)

    2021  Volume 2303, Page(s) 559–578

    Abstract: Versican is a widely distributed chondroitin sulfate proteoglycan that forms large complexes with the glycosaminoglycan hyaluronan (HA). As a consequence of HA binding to its receptor CD44 and interactions of the versican C-terminal globular (G3) domain ... ...

    Abstract Versican is a widely distributed chondroitin sulfate proteoglycan that forms large complexes with the glycosaminoglycan hyaluronan (HA). As a consequence of HA binding to its receptor CD44 and interactions of the versican C-terminal globular (G3) domain with a variety of extracellular matrix proteins, versican is a key component of well-defined networks in pericellular matrix and extracellular matrix. Versican is crucial for several developmental processes in the embryo ranging from cardiac development to digit separation, and there is an increasing interest in its roles in cancer and inflammation. Versican proteolysis by ADAMTS proteases is highly regulated, occurs at specific peptide bonds, and is relevant to several physiological and disease mechanisms. In this chapter, methods are described for the isolation and detection of intact and cleaved versican in tissues using morphologic and biochemical techniques. These, together with the methodologies for purification and analysis of recombinant versican and an N-terminal versican fragment named versikine that are provided here, are likely to facilitate further progress on the biology of versican and its proteolysis.
    MeSH term(s) ADAMTS Proteins/metabolism ; Chondroitin Sulfate Proteoglycans/metabolism ; Extracellular Matrix/metabolism ; Hyaluronic Acid/metabolism ; Lectins, C-Type/metabolism ; Proteolysis ; Versicans/isolation & purification ; Versicans/metabolism
    Chemical Substances Chondroitin Sulfate Proteoglycans ; Lectins, C-Type ; Versicans (126968-45-4) ; Hyaluronic Acid (9004-61-9) ; ADAMTS Proteins (EC 3.4.24.-)
    Language English
    Publishing date 2021-10-09
    Publishing country United States
    Document type Journal Article ; Research Support, N.I.H., Extramural ; Research Support, Non-U.S. Gov't
    ISSN 1940-6029
    ISSN (online) 1940-6029
    DOI 10.1007/978-1-0716-1398-6_43
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  10. Article ; Online: Degradomic Identification of Membrane Type 1-Matrix Metalloproteinase as an ADAMTS9 and ADAMTS20 Substrate.

    Nandadasa, Sumeda / Martin, Daniel / Deshpande, Gauravi / Robert, Karyn L / Stack, M Sharon / Itoh, Yoshifumi / Apte, Suneel S

    Molecular & cellular proteomics : MCP

    2023  Volume 22, Issue 6, Page(s) 100566

    Abstract: The secreted metalloproteases ADAMTS9 and ADAMTS20 are implicated in extracellular matrix proteolysis and primary cilium biogenesis. Here, we show that clonal gene-edited RPE-1 cells in which ADAMTS9 was inactivated, and which constitutively lack ... ...

    Abstract The secreted metalloproteases ADAMTS9 and ADAMTS20 are implicated in extracellular matrix proteolysis and primary cilium biogenesis. Here, we show that clonal gene-edited RPE-1 cells in which ADAMTS9 was inactivated, and which constitutively lack ADAMTS20 expression, have morphologic characteristics distinct from parental RPE-1 cells. To investigate underlying proteolytic mechanisms, a quantitative terminomics method, terminal amine isotopic labeling of substrates was used to compare the parental and gene-edited RPE-1 cells and their medium to identify ADAMTS9 substrates. Among differentially abundant neo-amino (N) terminal peptides arising from secreted and transmembrane proteins, a peptide with lower abundance in the medium of gene-edited cells suggested cleavage at the Tyr
    MeSH term(s) Cell Membrane/metabolism ; Hemopexin/metabolism ; Matrix Metalloproteinase 14/genetics ; Matrix Metalloproteinase 14/metabolism ; Peptides/metabolism ; Proteolysis ; Humans
    Chemical Substances Hemopexin (9013-71-2) ; Matrix Metalloproteinase 14 (EC 3.4.24.80) ; Peptides ; ADAMTS20 protein, human (EC 3.4.24.-) ; ADAMTS9 protein, human (EC 3.4.24.-) ; MMP14 protein, human (EC 3.4.24.80)
    Language English
    Publishing date 2023-05-09
    Publishing country United States
    Document type Journal Article
    ZDB-ID 2075924-1
    ISSN 1535-9484 ; 1535-9476
    ISSN (online) 1535-9484
    ISSN 1535-9476
    DOI 10.1016/j.mcpro.2023.100566
    Database MEDical Literature Analysis and Retrieval System OnLINE

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