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Transmembrane proteins / Membrane biology / Gene expression / Genetics / Lac operon / Lactose permease / Active transport / Permease / Secondary active transport / Biology / Bacteria / Transport proteins


Electrophysiological characterization of LacY Juan J. Garcia-Celmaa, Irina N. Smirnovab, H. Ronald Kabackb,1, and Klaus Fendlera,1 aDepartment of Biophysical Chemistry, Max Planck Institute of Biophysics, D[removed]Frankfu
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Document Date: 2011-11-09 21:09:33


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City

Symport / Frankfurt am Main / /

Country

Germany / /

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Facility

Max Planck Institute of Biophysics / Molecular Biology Institute / University of California / /

IndustryTerm

substrate-binding site / lac carrier protein / empty carrier / resonance energy transfer / functional lactose carrier / iterative least-squares algorithm / lac carrier / purified lac carrier protein / solution exchange protocol / iterative least-squares deconvolution algorithm / least-square deconvolution algorithm / /

Organization

Molecular Biology Institute / National Science Foundation / University of California / Los Angeles / Max Planck Institute of Biophysics / /

Person

H. Ronald Kabackb / Klaus Fendlera / Andre Bazzone / Lina Hatahet / Winfred Haase / H. Ronald Kaback / Irina N. Smirnovab / Ernst Bamberg / Juan J. Garcia-Celmaa / Ann N Y Acad Sci / /

Position

Author / alternating access model for LacY / /

ProvinceOrState

Alabama / California / /

PublishedMedium

Microbiology / /

Technology

least-square deconvolution algorithm / solution exchange protocol / antibodies / iterative least-squares algorithm / directed mutagenesis / crystallization / iterative least-squares deconvolution algorithm / /

URL

www.pnas.org兾cgi兾doi兾10.1073兾pnas.0902471106 / www.pnas.org/cgi/content/full / /

SocialTag