DYNAMOM

New magnetic resonance techniques to determine the dynamic structure of mitochondrial outer membrane proteins and their complexes

 Coordinatore DEUTSCHES ZENTRUM FUER NEURODEGENERATIVE ERKRANKUNGEN EV 

Spiacenti, non ci sono informazioni su questo coordinatore. Contattare Fabio per maggiori infomrazioni, grazie.

 Nazionalità Coordinatore Germany [DE]
 Totale costo 1˙496˙200 €
 EC contributo 1˙496˙200 €
 Programma FP7-IDEAS-ERC
Specific programme: "Ideas" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call ERC-2011-StG_20101109
 Funding Scheme ERC-SG
 Anno di inizio 2011
 Periodo (anno-mese-giorno) 2011-11-01   -   2016-10-31

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    MAX PLANCK GESELLSCHAFT ZUR FOERDERUNG DER WISSENSCHAFTEN E.V.

 Organization address address: Hofgartenstrasse 8
city: MUENCHEN
postcode: 80539

contact info
Titolo: Mr.
Nome: Manfred
Cognome: Messerschmidt
Email: send email
Telefono: +49 551 2011221
Fax: +49 551 2011331

DE (MUENCHEN) beneficiary 508˙440.00
2    DEUTSCHES ZENTRUM FUER NEURODEGENERATIVE ERKRANKUNGEN EV

 Organization address address: LUDWIG-ERHARD-ALLEE 2
city: BONN
postcode: 53175

contact info
Titolo: Dr.
Nome: Katrin
Cognome: Bürger
Email: send email
Telefono: 4922840000000
Fax: 4922840000000

DE (BONN) hostInstitution 987˙760.00
3    DEUTSCHES ZENTRUM FUER NEURODEGENERATIVE ERKRANKUNGEN EV

 Organization address address: LUDWIG-ERHARD-ALLEE 2
city: BONN
postcode: 53175

contact info
Titolo: Prof.
Nome: Markus Heinz-Georg Sebastian
Cognome: Zweckstetter
Email: send email
Telefono: +49 551 2012220
Fax: +49 551 2012202

DE (BONN) hostInstitution 987˙760.00

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 Word cloud

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structure    mitochondrial    resolution    nmr    membrane    proteins    outer    human    dynamics    structural    dynamic    time    techniques   

 Obiettivo del progetto (Objective)

'Membrane proteins are coded by about 30% of the genes in the human genome and are primary targets for the action of drugs. I propose an interdisciplinary approach that will provide insight into the dynamic structure of membrane proteins of the outer mitochondrial membrane at unprecedented detail with respect to spatial resolution and time scale separation. Analysis of the dynamics and structure of membrane proteins is one of the biggest challenges in structural biology. I propose several new techniques mainly for solution NMR spectroscopy but also for solid-state NMR and electron paramagnetic resonance that go far beyond the state of art and enrich the sparse information from each of the individual techniques. The integration of complementary experimental information together with molecular dynamics simulations will push the description of the dynamic structure of membrane proteins to a new level. This new level is characterized by the possibility to determine structural ensembles of higher structural complexity and by access to dynamic time scales ranging from picoseconds to milliseconds. The characterization of motion is expected to establish the essential link between structure and function. The chosen outer mitochondrial membrane proteins are linked to several human pathologies that cannot be treated because structural and dynamic information at atomic resolution is missing. I expect that the novel insight into the dynamic structure of mitochondrial proteins will be critical to lay the basis for the development of novel, selective and improved therapies for cancer and age-related neurodegeneration.'

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