GLYCOPEPTIDES

"“Solid phase synthesis, biophysical study and biological evaluation of cyclic glycopeptides for inhibition of protein protein interactions”"

 Coordinatore NATIONAL UNIVERSITY OF IRELAND, GALWAY 

 Organization address address: University Road -
city: GALWAY

contact info
Titolo: Dr.
Nome: Jacinta
Cognome: Thornton
Email: send email
Telefono: 35391495684
Fax: 35391496388

 Nazionalità Coordinatore Ireland [IE]
 Totale costo 174˙784 €
 EC contributo 174˙784 €
 Programma FP7-PEOPLE
Specific programme "People" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call FP7-PEOPLE-2007-2-1-IEF
 Funding Scheme MC-IEF
 Anno di inizio 2008
 Periodo (anno-mese-giorno) 2008-11-06   -   2010-11-05

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    NATIONAL UNIVERSITY OF IRELAND, GALWAY

 Organization address address: University Road -
city: GALWAY

contact info
Titolo: Dr.
Nome: Jacinta
Cognome: Thornton
Email: send email
Telefono: 35391495684
Fax: 35391496388

IE (GALWAY) coordinator 0.00

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 Word cloud

Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.

alpha    jarikote    protein    dr    peptide    glycopeptides    interactions    helical    nmr    bak    synthetic    pharmacophoric    groups    synthesis    biophysical    mimics    solid   

 Obiettivo del progetto (Objective)

'Dr. Jarikote, an Indian national who has recently completed his PhD in Germany and is currently working with Prof. Dr. Paul Murphy. It is proposed that Dr. Jarikote will work on solid phase synthesis of cyclic glycopeptides and their biophysical characterization with a view to generating novel inhibitors of protein-protein interactions, in particular those that involve a-helices. He will also receive training in carbohydrate chemistry, scaffolds, NMR and molecular modelling and their application to the design of bioactive compounds wherever necessary. The biophysical characterisation will also carried out and techniques such as NMR and fluorescence will be used to investigate binding of synthetic ligands to targeted proteins. Such synthetic mimics could have wide pharmaceutical importance as they have potential to be bioavailable mimics of peptides that modulate protein-protein interactions. The proposal is of interdisciplinary nature, collaborating ultimately with physical chemists and cell biologists and will focus on the design, synthesis and biological evaluation of novel proteomimetics or peptidomimetics based on macrocycles comprised of saccharide structures. Mimetics of the surface of the Bak peptide (an alpha-helical peptide) based on glycopeptides will be synthesised on the solid phase and the products will be evaluated for their biophysical properties effects on promoting apoptosis in tumour cells. The solid phase synthesis approach will give rise to rapid access of numerous derivatives of target oriented glycopeptides in short time period. The glycopeptides design will be based on ensuring the presentation of pharmacophoric groups in a spatial orientation that matches that of residues at i, i4 and i7 of the relevant α–helical peptide, in this case the BAK peptide. The solid phase approach will faciliate efficient investigation of a number of pharmacophoric groups that will allow generation of an optimal ligand that mimics the natural peptide.'

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