Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies

Jenssen K, Sewald K, Sewald N (2004)
BIOCONJUGATE CHEMISTRY 15(3): 594-600.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Jenssen, K; Sewald, K; Sewald, NorbertUniBi
Abstract / Bemerkung
Immobilized small-molecule inhibitors are suited for enrichment of biomolecules by affinity chromatography, as it is shown for metalloproteinases and an immobilizable derivative of the hydroxamate-type inhibitor marimastat. A new asymmetric synthesis of marimastat is presented that allows for site-specific attachment to a solid surface, e.g., a chromatography matrix or a surface plasmon resonance sensor chip. The latter technique is shown to be a valuable tool for the optimization of binding and elution conditons of biomolecules in affinity chromatography.
Erscheinungsjahr
2004
Zeitschriftentitel
BIOCONJUGATE CHEMISTRY
Band
15
Ausgabe
3
Seite(n)
594-600
ISSN
1043-1802
eISSN
1520-4812
Page URI
https://pub.uni-bielefeld.de/record/1607848

Zitieren

Jenssen K, Sewald K, Sewald N. Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies. BIOCONJUGATE CHEMISTRY. 2004;15(3):594-600.
Jenssen, K., Sewald, K., & Sewald, N. (2004). Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies. BIOCONJUGATE CHEMISTRY, 15(3), 594-600. https://doi.org/10.1021/bc034225l
Jenssen, K, Sewald, K, and Sewald, Norbert. 2004. “Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies”. BIOCONJUGATE CHEMISTRY 15 (3): 594-600.
Jenssen, K., Sewald, K., and Sewald, N. (2004). Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies. BIOCONJUGATE CHEMISTRY 15, 594-600.
Jenssen, K., Sewald, K., & Sewald, N., 2004. Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies. BIOCONJUGATE CHEMISTRY, 15(3), p 594-600.
K. Jenssen, K. Sewald, and N. Sewald, “Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies”, BIOCONJUGATE CHEMISTRY, vol. 15, 2004, pp. 594-600.
Jenssen, K., Sewald, K., Sewald, N.: Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies. BIOCONJUGATE CHEMISTRY. 15, 594-600 (2004).
Jenssen, K, Sewald, K, and Sewald, Norbert. “Synthesis of marimastat and a marimastat conjugate for affinity chromatography and surface plasmon resonance studies”. BIOCONJUGATE CHEMISTRY 15.3 (2004): 594-600.

8 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Labeling and enrichment of Arabidopsis thaliana matrix metalloproteases using an active-site directed, marimastat-based photoreactive probe.
Lenger J, Kaschani F, Lenz T, Dalhoff C, Villamor JG, Köster H, Sewald N, van der Hoorn RA., Bioorg Med Chem 20(2), 2012
PMID: 21775155
Characterization of the catalytic activity of the membrane-anchored metalloproteinase ADAM15 in cell-based assays.
Maretzky T, Yang G, Ouerfelli O, Overall CM, Worpenberg S, Hassiepen U, Eder J, Blobel CP., Biochem J 420(1), 2009
PMID: 19207106
A peptide hydroxamate library for enrichment of metalloproteinases: towards an affinity-based metalloproteinase profiling protocol.
Geurink P, Klein T, Leeuwenburgh M, van der Marel G, Kauffman H, Bischoff R, Overkleeft H., Org Biomol Chem 6(7), 2008
PMID: 18362965
Molecular tools for metalloprotease sub-proteome generation.
Collet M, Lenger J, Jenssen K, Plattner HP, Sewald N., J Biotechnol 129(2), 2007
PMID: 17207876
The use of affinity sorbents in targeted proteomics.
Freije JR, Bischoff R., Drug Discov Today Technol 3(1), 2006
PMID: 24980096
Chemical tools for activity-based proteomics.
Hagenstein MC, Sewald N., J Biotechnol 124(1), 2006
PMID: 16442651
Design and characterization of a metalloproteinase inhibitor-tethered resin for the detection of active MMPs in biological samples.
Hesek D, Toth M, Meroueh SO, Brown S, Zhao H, Sakr W, Fridman R, Mobashery S., Chem Biol 13(4), 2006
PMID: 16632250
Survey of the year 2004 commercial optical biosensor literature.
Rich RL, Myszka DG., J Mol Recognit 18(6), 2005
PMID: 16252250

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