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Substituted Syndecan-2-Derived Mimetic Peptides Show Improved Antitumor Activity over the Parent Syndecan-2-Derived Peptide

Title
Substituted Syndecan-2-Derived Mimetic Peptides Show Improved Antitumor Activity over the Parent Syndecan-2-Derived Peptide
Authors
Jang B.Kim A.Lee Y.Hwang J.Sung J.-Y.Jang E.-J.Kim Y.-N.Yun J.-H.Han J.Song J.-J.Lee W.Oh E.-S.
Ewha Authors
오억수황지선장보희
SCOPUS Author ID
오억수scopus; 황지선scopus; 장보희scopus
Issue Date
2022
Journal Title
International Journal of Molecular Sciences
ISSN
1661-6596JCR Link
Citation
International Journal of Molecular Sciences vol. 23, no. 11
Keywords
colon cancermatrix metalloproteinase-7syndecan-2therapeutic agent
Publisher
MDPI
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
We previously showed that a synthetic peptide (S2-P) corresponding to a portion of the human syndecan-2 (SDC2) sequence can bind to the pro-domain of matrix metalloproteinase-7 (MMP-7) to inhibit colon cancer activities. Since S2-P had a relatively weak binding affinity for the MMP-7 pro-domain, we herein modified the amino acid sequence of S2-P to improve the anticancer potential. On the basis of the interaction structure of S2-P and MMP-7, four peptides were generated by replacing amino acids near Tyr 51, which is critical for the interaction. The SDC2-mimetic peptides harboring an Ala-to-Asp substitution at the C-terminal side of Tyr 51 (S2-D) or with an Ala-to-Phe substitution at the N-terminal side of Tyr 51 and an Ala-to-Asp substitution at the C-terminal side of Tyr 51 (S2-FE) showed improved interaction affinities for the MMP-7 pro-domain. Compared to S2-P, S2-FE was better able to inhibit the SDC2–MMP-7 interaction, the cell surface localization of MMP-7, the gelatin degradation activity of MMP-7, and the cancer activities (cell migration, invasion, and colony-forming activity) of human HCT116 colon cancer cells in vitro. In vivo, S2-FE inhibited the primary tumor growth and lung metastasis of CT26 mouse colon cancer cells in a xenograft mouse model. Together, these data suggest that S2-FE could be useful therapeutic anticancer peptides for colon cancer. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.
DOI
10.3390/ijms23115888
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자연과학대학 > 생명과학전공 > Journal papers
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