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Douglas J Swartz

Showing results (1-10 of 7) with videos related to

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Biochimica Et Biophysica Acta|December 25, 2012
P-glycoprotein is fully active after multiple tryptophan substitutionsDouglas J Swartz, Joachim Weber, Ina L Urbatsch
Scientific Reports|February 22, 2020
Replacing the eleven native tryptophans by directed evolution produces an active P-glycoprotein with site-specific, non-conservative substitutionsDouglas J Swartz, Anukriti Singh, Narong Sok, et al.
Bioscience Reports|May 15, 2014
Directed evolution of P-glycoprotein cysteines reveals site-specific, non-conservative substitutions that preserve multidrug resistanceDouglas J Swartz, Leo Mok, Sri K Botta, et al.
Biochimica Et Biophysica Acta. Biomembranes|October 27, 2016
Interactions and cooperativity between P-glycoprotein structural domains determined by thermal unfolding provides insights into its solution structure and functionZhengrong Yang, Qingxian Zhou, Leo Mok, et al.
The Journal of Biological Chemistry|October 12, 2017
Substrate-induced conformational changes in the nucleotide-binding domains of lipid bilayer-associated P-glycoprotein during ATP hydrolysisMaria E Zoghbi, Leo Mok, Douglas J Swartz, et al.
Plos One|August 10, 2011
A gene optimization strategy that enhances production of fully functional P-glycoprotein in Pichia pastorisJiangping Bai, Douglas J Swartz, Irina I Protasevich, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 1, 2013
Structures of P-glycoprotein reveal its conformational flexibility and an epitope on the nucleotide-binding domainAndrew B Ward, Paul Szewczyk, Vinciane Grimard, et al.
Pageof 1

Showing results (1-10 of 7) with videos related to

Sort By:
Pageof 1
Biochimica Et Biophysica Acta|December 25, 2012
P-glycoprotein is fully active after multiple tryptophan substitutionsDouglas J Swartz, Joachim Weber, Ina L Urbatsch
Scientific Reports|February 22, 2020
Replacing the eleven native tryptophans by directed evolution produces an active P-glycoprotein with site-specific, non-conservative substitutionsDouglas J Swartz, Anukriti Singh, Narong Sok, et al.
Bioscience Reports|May 15, 2014
Directed evolution of P-glycoprotein cysteines reveals site-specific, non-conservative substitutions that preserve multidrug resistanceDouglas J Swartz, Leo Mok, Sri K Botta, et al.
Biochimica Et Biophysica Acta. Biomembranes|October 27, 2016
Interactions and cooperativity between P-glycoprotein structural domains determined by thermal unfolding provides insights into its solution structure and functionZhengrong Yang, Qingxian Zhou, Leo Mok, et al.
The Journal of Biological Chemistry|October 12, 2017
Substrate-induced conformational changes in the nucleotide-binding domains of lipid bilayer-associated P-glycoprotein during ATP hydrolysisMaria E Zoghbi, Leo Mok, Douglas J Swartz, et al.
Plos One|August 10, 2011
A gene optimization strategy that enhances production of fully functional P-glycoprotein in Pichia pastorisJiangping Bai, Douglas J Swartz, Irina I Protasevich, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 1, 2013
Structures of P-glycoprotein reveal its conformational flexibility and an epitope on the nucleotide-binding domainAndrew B Ward, Paul Szewczyk, Vinciane Grimard, et al.
Pageof 1