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Hydrophobic mismatch / Model lipid bilayer / Cell membrane / Antimicrobial peptides / Membrane protein / Gramicidin / Lipid / Phospholipid / Bilayer / Biology / Membrane biology / Lipid bilayer


Alamethicin in lipid bilayers: Combined use of X-ray scattering and MD simulations
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Document Date: 2009-05-23 16:33:51


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File Size: 1,62 MB

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City

Pittsburgh / Worcester / Ontario K0J1J0 / Totowa / Calgary / Milwaukee / /

Company

Sigma-Aldrich / Elsevier B.V. / Humana Press / M.S.P. / /

Country

United States / Canada / /

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Event

Reorganization / /

Facility

mm square / J.E. Hall / University of Calgary / Carnegie Mellon University / /

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IndustryTerm

insertion free energy / free energy / online version / free energy hinges / uctuational free energy / uctuation free energy / model systems / less energy / peptide/ lipid systems / modest free energy difference / chloroform stock solution / free energy costs / lipid systems / energy / /

Organization

USA Department of Biological Sciences / Biophysical Society / National Research Council / National Institute of Health / National Science Foundation / Cornell / Physics Department / Canadian Neutron Beam Centre / University of Calgary / Carnegie Mellon University / Carnegie Mellon University / Pittsburgh / /

Person

D. Peter Tieleman / J.F. Nagle / Norbert Kučerka / Alm / Huey Huang / Georg Pabst / B.A. Wallace / Aunit / Stephanie Tristram-Nagle / John F. Nagle / /

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Position

HB / Model / Corresponding author / /

Product

Avanti / /

ProvinceOrState

S1 / Alberta / New Jersey / Ins / Alabama / Pennsylvania / /

PublishedMedium

Molecular Biology / /

Technology

alpha / radiation / X-ray / simulation / /

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