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High-Resolution Conformational Analysis of RGDechi-Derived Peptides Based on a Combination of NMR Spectroscopy and MD Simulations

Authors :
Clementina Acconcia
Antonella Paladino
Maria della Valle
Biancamaria Farina
Annarita Del Gatto
Sonia Di Gaetano
Domenica Capasso
Maria Teresa Gentile
Gaetano Malgieri
Carla Isernia
Michele Saviano
Roberto Fattorusso
Laura Zaccaro
Luigi Russo
Acconcia, Clementina
Paladino, Antonella
Valle, Maria della
Farina, Biancamaria
Del Gatto, Annarita
Gaetano, Sonia Di
Capasso, Domenica
Gentile, Maria Teresa
Malgieri, Gaetano
Isernia, Carla
Saviano, Michele
Fattorusso, Roberto
Zaccaro, Laura
Russo, Luigi
Source :
International Journal of Molecular Sciences; Volume 23; Issue 19; Pages: 11039
Publication Year :
2022
Publisher :
MDPI AG, 2022.

Abstract

The crucial role of integrin in pathological processes such as tumor progression and metastasis formation has inspired intense efforts to design novel pharmaceutical agents modulating integrin functions in order to provide new tools for potential therapies. In the past decade, we have investigated the biological proprieties of the chimeric peptide RGDechi, containing a cyclic RGD motif linked to an echistatin C-terminal fragment, able to specifically recognize αvβ3 without cross reacting with αvβ5 and αIIbβ3 integrin. Additionally, we have demonstrated using two RGDechi-derived peptides, called RGDechi1-14 and ψRGDechi, that chemical modifications introduced in the C-terminal part of the peptide alter or abolish the binding to the αvβ3 integrin. Here, to shed light on the structural and dynamical determinants involved in the integrin recognition mechanism, we investigate the effects of the chemical modifications by exploring the conformational space sampled by RGDechi1-14 and ψRGDechi using an integrated natural-abundance NMR/MD approach. Our data demonstrate that the flexibility of the RGD-containing cycle is driven by the echistatin C-terminal region of the RGDechi peptide through a coupling mechanism between the N- and C-terminal regions.

Details

ISSN :
14220067
Volume :
23
Database :
OpenAIRE
Journal :
International Journal of Molecular Sciences
Accession number :
edsair.doi.dedup.....a14c6885c67a6c204b8c91ea17a73e7f
Full Text :
https://doi.org/10.3390/ijms231911039