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Interactions of GFAP with ceftriaxone and phenytoin: SRCD and molecular docking and dynamic simulation

Academic Article
Publication Date:
2016
abstract:
Background: GFAP is the major intermediate filament protein inmature astrocytes. Its increased expression and aggregation was firstly associated to Alexander's disease, and successively in different neurological diseases including scrapie, Alzheimer's and Creutzfeld-Jacob diseases. Recently, ceftriaxone a multi-potent ?-lactam antibiotic able to overcome the blood-brain barrier, successfully eliminated the cellular toxic effects of misfolded mutated GFAP, similarly to phenytoin sodium, in a cellular model of Alexander's disease and inhibited ?-synuclein aggregation protecting PC12 cells from the exposure to 6-hydroxydopamine. Methods: In this study, synchrotron radiation circular dichroism spectroscopy has been used to obtain structural information about the GFAP-ceftriaxone (phenytoin) interactions, while computational methods allowed the identification of the relevant putative binding site of either ceftriaxone or phenytoin on the dimer structure of GFAP, permitting to rationalize the spectroscopic experimental results. Results: We found that GFAP exhibited enhanced stability upon the addition of two equivalents of each ligands with ceftriaxone imparting a more spontaneous interactions and a more ordered complex system than phenytoin. Conclusions: SRCD data andMDmodels indicate a stronger protective effect of ceftriaxone in neurological disorders characterized by an increased production and polymerization of GFAP. General significance: This result, in addition to our previous works in which we documented that ceftriaxone interacts with ?-synuclein inhibiting its pathological aggregation and that a cyclical treatment with this molecule in a patient with adult-onset Alexander's disease halted, and partly reversed, the progression of neurodegeneration, suggests the possibility of a chaperone-like effect of ceftriaxone on protein involved in specific neurodegenerative diseases.
Iris type:
01.01 Articolo in rivista
Keywords:
Ceftriaxone; Glial fibrillary acidic protein; Neurodegenerative diseases; Synchrotron radiation circular dichroism; spectroscopy
List of contributors:
Vitale, Rosamaria; Ruzza, Paolo; Amodeo, Pietro; Biondi, Barbara
Authors of the University:
AMODEO PIETRO
BIONDI BARBARA
RUZZA PAOLO
VITALE ROSA MARIA
Handle:
https://iris.cnr.it/handle/20.500.14243/319185
Published in:
BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS
Journal
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