The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis
Farr M, Pieper M, Calvete J, Tschesche H (1999)
BIOCHEMISTRY 38(22): 7332-7338.
Zeitschriftenaufsatz
| Veröffentlicht | Englisch
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
Farr, M;
Pieper, M;
Calvete, J;
Tschesche, HaraldUniBi
Einrichtung
Abstract / Bemerkung
Tissue inhibitors of metalloproteinases (TIMPs) are the physiological, specific inhibitors of matrix metalloproteinases (MMPs) forming tight, noncovalent complexes. Therefore they control the proteolytic activity of MMPs toward the extracellular matrix. To analyze the inhibition of the "activated" and "superactivated" variants of human neutrophil collagenase (MMP-8) by TIMP-2, we determined complex dissociation constants using biomolecular interaction analysis (BIA). As it is known that the association rate constants can exceed the limits of the BIA instruments, the biomolecular interaction analysis was used to examine the equlibrium situation. The dissociation constants were determined by fitting the parameters of the mathematical term for the binding of collagenase onto the TIMP-coupled sensor chip surface to the saturation curve derived from individual sensorgrams. The resulting values are in the nanomolar range and correlate with the results of fluorescence kinetics. These data reveal that TIMP-2 (the recombinant inhibitory domain of human TIMP-2 and bovine TIMP-2 isolated from seminal plama) is a better inhibitor of the activated neutrophil collagenase than of the superactivated variant (the recombinant catalytic domain of human MMP-8). It has been demonstrated by X-ray analysis that the N-terminal heptapeptide only of superactivated MMP-8 is attached by a salt bridge and hydrophobic interaction to the C-terminal helix. Because these interactions have to be disrupted in the complex formation with TIMP we assume that the activated variant enables higher flexibility and a tighter induced fit in the complex formation. Therefore superactivation of MMP-8 correlates with weaker inhibition by TIMP-2.
Erscheinungsjahr
1999
Zeitschriftentitel
BIOCHEMISTRY
Band
38
Ausgabe
22
Seite(n)
7332-7338
ISSN
0006-2960
eISSN
1520-4995
Page URI
https://pub.uni-bielefeld.de/record/1622935
Zitieren
Farr M, Pieper M, Calvete J, Tschesche H. The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis. BIOCHEMISTRY. 1999;38(22):7332-7338.
Farr, M., Pieper, M., Calvete, J., & Tschesche, H. (1999). The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis. BIOCHEMISTRY, 38(22), 7332-7338. https://doi.org/10.1021/bi982618f
Farr, M, Pieper, M, Calvete, J, and Tschesche, Harald. 1999. “The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis”. BIOCHEMISTRY 38 (22): 7332-7338.
Farr, M., Pieper, M., Calvete, J., and Tschesche, H. (1999). The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis. BIOCHEMISTRY 38, 7332-7338.
Farr, M., et al., 1999. The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis. BIOCHEMISTRY, 38(22), p 7332-7338.
M. Farr, et al., “The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis”, BIOCHEMISTRY, vol. 38, 1999, pp. 7332-7338.
Farr, M., Pieper, M., Calvete, J., Tschesche, H.: The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis. BIOCHEMISTRY. 38, 7332-7338 (1999).
Farr, M, Pieper, M, Calvete, J, and Tschesche, Harald. “The N-terminus of collagenase MMP-8 determines superactivity and inhibition: A relation of structure and function analyzed by biomolecular interaction analysis”. BIOCHEMISTRY 38.22 (1999): 7332-7338.
Daten bereitgestellt von European Bioinformatics Institute (EBI)
6 Zitationen in Europe PMC
Daten bereitgestellt von Europe PubMed Central.
Differential expression of extracellular matrix components in the Fallopian tubes throughout the menstrual cycle.
Diaz PS, Solar PA, Juica NE, Orihuela PA, Cardenas H, Christodoulides M, Vargas R, Velasquez LA., Reprod Biol Endocrinol 10(), 2012
PMID: 22897899
Diaz PS, Solar PA, Juica NE, Orihuela PA, Cardenas H, Christodoulides M, Vargas R, Velasquez LA., Reprod Biol Endocrinol 10(), 2012
PMID: 22897899
Flexibility and variability of TIMP binding: X-ray structure of the complex between collagenase-3/MMP-13 and TIMP-2.
Maskos K, Lang R, Tschesche H, Bode W., J Mol Biol 366(4), 2007
PMID: 17196980
Maskos K, Lang R, Tschesche H, Bode W., J Mol Biol 366(4), 2007
PMID: 17196980
Treatment of experimental autoimmune encephalomyelitis with a neurotropic alphavirus vector expressing tissue inhibitor of metalloproteinase-2.
Nygårdas PT, Grönberg SA, Heikkilä J, Joronen K, Sorsa T, Hinkkanen AE., Scand J Immunol 60(4), 2004
PMID: 15379862
Nygårdas PT, Grönberg SA, Heikkilä J, Joronen K, Sorsa T, Hinkkanen AE., Scand J Immunol 60(4), 2004
PMID: 15379862
Characterization of C-terminally truncated human tissue inhibitor of metalloproteinases-4 expressed in Pichia pastoris.
Stratmann B, Farr M, Tschesche H., Biol Chem 382(6), 2001
PMID: 11501766
Stratmann B, Farr M, Tschesche H., Biol Chem 382(6), 2001
PMID: 11501766
Survey of the 1999 surface plasmon resonance biosensor literature.
Rich RL, Myszka DG., J Mol Recognit 13(6), 2000
PMID: 11114072
Rich RL, Myszka DG., J Mol Recognit 13(6), 2000
PMID: 11114072
Skerra A, 2000. Engineered scaffolds for molecular recognition. Journal of Molecular Recognition13:167-187.
Rich RL, Myszka DG., J Mol Recognit 13(6), 2000
PMID: 11114073
Rich RL, Myszka DG., J Mol Recognit 13(6), 2000
PMID: 11114073
References
Daten bereitgestellt von Europe PubMed Central.
Export
Markieren/ Markierung löschen
Markierte Publikationen
Web of Science
Dieser Datensatz im Web of Science®Quellen
PMID: 10353844
PubMed | Europe PMC
Suchen in