Literature DB >> 12963061

Analysis of matrix metalloproteinase triple-helical peptidase activity with substrates incorporating fluorogenic L- or D-amino acids.

Janelle L Lauer-Fields1, Péter Kele, Guodong Sui, Hideaki Nagase, Roger M Leblanc, Gregg B Fields.   

Abstract

The consequences of improper regulation of collagen turnover include diseases such as tumor cell metastasis and arthritis. Several fluorogenic triple-helical peptide (fTHP) substrates have been constructed presently to examine collagenolytic behavior. These substrates incorporate L- or D-2-amino-3-(7-methoxy-4-coumaryl)propionic acid (Amp) or L- or D-2-amino-3-(6,7-dimethoxy-4-coumaryl)propionic acid (Adp) as the fluorophore and N-2,4-dinitrophenyl (Dnp) as the quencher. The desired sequences were C6-(Gly-Pro-Hyp)5-Gly-Pro-[Amp/Adp]-Gly-Pro-Gln-Gly approximately Leu-Arg-Gly-Gln-Lys(Dnp)-Gly-Val-Arg-(Gly-Pro-Hyp)5-NH2. All four fTHPs formed stable triple-helices. Matrix metalloproteinase-2 (MMP-2) rates of hydrolysis for all fTHPs were considerably more rapid than corresponding MMP-1 rates. Evaluation of individual kinetic parameters indicated that MMP-2 bound to the fTHPs more efficiently than MMP-1. Comparison to a triple-helical substrate incorporating the same sequence but with a different fluorophore [Lys((7-methoxycoumarin-4-yl)acetyl); Lys(Mca)] demonstrated that the shorter side chain of Amp or Adp was better tolerated by MMP-1 and MMP-2. Adp may well be the fluorophore of choice for fTHPs, as (a) fTHPs incorporating Adp were obtained in significantly higher yields than the Amp-containing fTHPs, (b) Adp has a larger Stokes shift than either Amp or Lys(Mca) and thus has less chance of self-quenching, (c) Adp has a relatively high quantum yield, (d) the Adp/Dnp pair is compatible with multiwell plate reader formats, and (e) MMPs better tolerate Adp than Lys(Mca).

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Year:  2003        PMID: 12963061     DOI: 10.1016/s0003-2697(03)00460-3

Source DB:  PubMed          Journal:  Anal Biochem        ISSN: 0003-2697            Impact factor:   3.365


  10 in total

1.  Using fluorogenic peptide substrates to assay matrix metalloproteinases.

Authors:  G B Fields
Journal:  Methods Mol Biol       Date:  2001

2.  Detection of MMP-2 and MMP-9 activity in vivo with a triple-helical peptide optical probe.

Authors:  Walter J Akers; Baogang Xu; Hyeran Lee; Gail P Sudlow; Gregg B Fields; Samuel Achilefu; W Barry Edwards
Journal:  Bioconjug Chem       Date:  2012-02-29       Impact factor: 4.774

3.  Development of a solid-phase assay for analysis of matrix metalloproteinase activity.

Authors:  Janelle L Lauer-Fields; Hideaki Nagase; Gregg B Fields
Journal:  J Biomol Tech       Date:  2004-12

4.  Development of a Förster resonance energy transfer assay for monitoring bacterial collagenase triple-helical peptidase activity.

Authors:  Michal Tokmina-Roszyk; Dorota Tokmina-Roszyk; Manishabrata Bhowmick; Gregg B Fields
Journal:  Anal Biochem       Date:  2014-03-06       Impact factor: 3.365

Review 5.  Chemical biology for understanding matrix metalloproteinase function.

Authors:  Anna Knapinska; Gregg B Fields
Journal:  Chembiochem       Date:  2012-08-30       Impact factor: 3.164

Review 6.  Synthesis and biological applications of collagen-model triple-helical peptides.

Authors:  Gregg B Fields
Journal:  Org Biomol Chem       Date:  2010-01-20       Impact factor: 3.876

7.  Differentiation of secreted and membrane-type matrix metalloproteinase activities based on substitutions and interruptions of triple-helical sequences.

Authors:  Dmitriy Minond; Janelle L Lauer-Fields; Mare Cudic; Christopher M Overall; Duanqing Pei; Keith Brew; Marcia L Moss; Gregg B Fields
Journal:  Biochemistry       Date:  2007-03-06       Impact factor: 3.162

8.  High throughput screening of potentially selective MMP-13 exosite inhibitors utilizing a triple-helical FRET substrate.

Authors:  Janelle L Lauer-Fields; Dmitriy Minond; Peter S Chase; Pierre E Baillargeon; S Adrian Saldanha; Roma Stawikowska; Peter Hodder; Gregg B Fields
Journal:  Bioorg Med Chem       Date:  2008-03-06       Impact factor: 3.641

9.  MMP-12 catalytic domain recognizes triple helical peptide models of collagen V with exosites and high activity.

Authors:  Rajagopalan Bhaskaran; Mark O Palmier; Janelle L Lauer-Fields; Gregg B Fields; Steven R Van Doren
Journal:  J Biol Chem       Date:  2008-06-06       Impact factor: 5.157

10.  Activatable Optical Probes for the Detection of Enzymes.

Authors:  Christopher R Drake; David C Miller; Ella F Jones
Journal:  Curr Org Synth       Date:  2011-08       Impact factor: 1.975

  10 in total

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