2006
DOI: 10.1002/ange.200603100
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Snapshots of the Reaction Mechanism of Matrix Metalloproteinases

Abstract: Die Abfolge von Ereignissen, die im Katalysezyklus von Matrix‐Metalloproteinasen eintreten, wurde auf der Basis von Kristallstrukturen der aktiven, nicht inhibierten Enzyme und derselben Enzyme nach Hydrolyse eines Peptidsubstrats modelliert. Nach dem Bruch der Peptidbindung bleiben beide Peptidfragmente zunächst an das Protein gebunden (siehe Struktur der Kavität am aktiven Zentrum des Enzyms MMP‐12 direkt nach der Substrathydrolyse).

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Cited by 29 publications
(42 citation statements)
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“…To further explore whether the locally unfolded states sampled in the unfolding simulations are consistent with the MMP catalytic site, we docked representative structures from each minimum arising from the various pmfs into the crystallographic structure of the MMP catalytic site. Because there is considerable homology between the catalytic domains of different collagenases, we chose the catalytic domain from the crystallographic structure in the pdb that was solved to the highest resolution (i.e., MMP8 [PDB ID 2OY4]) 32, 33, 42…”
Section: Resultsmentioning
confidence: 99%
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“…To further explore whether the locally unfolded states sampled in the unfolding simulations are consistent with the MMP catalytic site, we docked representative structures from each minimum arising from the various pmfs into the crystallographic structure of the MMP catalytic site. Because there is considerable homology between the catalytic domains of different collagenases, we chose the catalytic domain from the crystallographic structure in the pdb that was solved to the highest resolution (i.e., MMP8 [PDB ID 2OY4]) 32, 33, 42…”
Section: Resultsmentioning
confidence: 99%
“…Structures arising from simulations that restrain the triple‐helical peptide to adopt a radius of gyration consistent with a local energy minimum were individually docked into the MMP8 binding site. Docking simulations were performed using a harmonic restraining potential that biased the rigid backbone of each partially unfolded structure to adopt the backbone conformation of a single stranded collagen‐like peptide found in the binding site of a related MMP 33. Docked structures that have a low rms between the collagen‐triple helix and the corresponding residues in a bound collagen‐like peptide are most complementary to the active site (see Methods section).…”
Section: Resultsmentioning
confidence: 99%
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“…X-ray crystallographic studies of MMP-12 and MMP-8 identified contacts from a single-stranded collagen-like peptide after hydrolysis (Bertini et al, 2006). The peptide fragments Pro-Gln-Gly and Ile-Ala-Gly, representing the cleavage site in the α1(I) collagen chain by collagenolytic MMPs (Fields, 2013), were held in place in the active site (Fig.…”
Section: Structural Evaluation Of Mmp Interactions With Collagenmentioning
confidence: 99%
“…(B) Ile-Ala-Gly adduct of MMP-12. Reproduced from Bertini et al (2006) by the permission of Wiley-VCH Verlag GmbH & Co. …”
Section: Figurementioning
confidence: 99%