The impact of tyrosine iodination on the aggregation and cleavage kinetics of MMP-9-responsive peptide sequences Journal Article


Authors: MacPherson, D. S.; McPhee, S. A.; Zeglis, B. M.; Ulijn, R. V.
Article Title: The impact of tyrosine iodination on the aggregation and cleavage kinetics of MMP-9-responsive peptide sequences
Abstract: Matrix metalloproteinase (MMP) enzymes are over-expressed by some metastatic cancers, in which they are responsible for the degradation and remodeling of the extracellular matrix. In recent years, MMPs have emerged as promising targets for enzyme-responsive diagnostic probes because oligopeptides can be designed to be selectively hydrolyzed by exposure to these enzymes. With the ultimate goal of developing radio-iodinated peptides as supramolecular building blocks for MMP-sensitive tools for nuclear imaging and therapy, we designed three MMP-9-responsive peptides containing either tyrosine or iodotyrosine to assess the impact of iodotyrosine introduction to the peptide structure and cleavage kinetics. We found that the peptides containing iodotyrosine underwent more rapid and more complete hydrolysis by MMP-9. While the peptides under investigation were predominantly disordered, it was found that iodination increased the degree of aromatic residue-driven aggregation of the peptides. We determined that these iodination-related trends stem from the improved overall intramolecular order through H- and halogen bonding, in addition to intermolecular organization of the self-assembled peptides due to steric and electrostatic effects introduced by the halogenated tyrosine. These fundamental observations provide insights for the development of enzyme-triggered peptide aggregation tools for localized radioactive iodine-based tumor imaging. © 2022 American Chemical Society.
Keywords: metabolism; gelatinase b; peptide; tyrosine; chemistry; kinetics; radioactive iodine; iodine radioisotopes; diagnosis; matrix metalloproteinase; peptides; thyroid neoplasms; amino acids; hydrolysis; thyroid tumor; enzymes; matrix metalloproteinase-9; metalloproteinases; matrix metalloproteinases; iodine; halogenation; self assembly; matrix; matrix metalloproteinase 9; humans; human; self-assembly; aggregation kinetics; enzyme-responsive materials; nanoscience; radio-iodine therapy; supramolecular organization; cleavage kinetics; enzyme responsive materials; peptide sequences; supramolecular organizations
Journal Title: ACS Biomaterials Science and Engineering
Volume: 8
Issue: 2
ISSN: 2373-9878
Publisher: American Chemical Society  
Date Published: 2022-02-14
Start Page: 579
End Page: 587
Language: English
DOI: 10.1021/acsbiomaterials.1c01488
PUBMED: 35050574
PROVIDER: scopus
PMCID: PMC9153392
DOI/URL:
Notes: Article -- Source: Scopus
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  1. Brian Zeglis
    118 Zeglis