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Structural Insights into the Osteopontin-Aptamer Complex by Molecular Dynamics Simulations

Academic Article
Publication Date:
2018
abstract:
Osteopontin is an intrinsically disordered protein involved in tissue remodeling. As a biomarker for pathological hypertrophy and fibrosis, the protein is targeted by an RNA aptamer. In this work, we model the interactions between osteopontin and its aptamer, including mono- (Na+) and divalent (Mg2+) cations. The molecular dynamics simulations suggest that the presence of divalent cations forces the N-terminus of osteopontin to bind the shell of divalent cations adsorbed over the surface of its RNA aptamer, the latter exposing a high negative charge density. The osteopontin plasticity as a function of the local concentration of Mg is discussed in the frame of the proposed strategies for osteopontin targeting as biomarker and in theranostic.
Iris type:
01.01 Articolo in rivista
Keywords:
osteopontin; aptamers; molecular models; ion condensation; intrinsically disordered proteins
List of contributors:
LA PENNA, Giovanni
Authors of the University:
LA PENNA GIOVANNI
Handle:
https://iris.cnr.it/handle/20.500.14243/373446
Published in:
FRONTIERS IN CHEMISTRY
Journal
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