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Catherine S Chan

Showing results (1-10 of 18) with videos related to

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Advances in Experimental Medicine and Biology|December 2, 2015
Biogenesis of Escherichia coli DMSO Reductase: A Network of Participants for Protein Folding and Complex Enzyme MaturationCatherine S Chan, Raymond J Turner
Journal of Visualized Experiments : Jove|September 7, 2012
A step-by-step method for the reconstitution of an ABC transporter into nanodisc lipid particlesHuan Bao, Franck Duong, Catherine S Chan
BMC Evolutionary Biology|June 13, 2015
NarJ subfamily system specific chaperone diversity and evolution is directed by respiratory enzyme associationsDenice C Bay, Catherine S Chan, Raymond J Turner
Proceedings of the National Academy of Sciences of the United States of America|March 2, 2012
Two copies of the SecY channel and acidic lipids are necessary to activate the SecA translocation ATPaseKush Dalal, Catherine S Chan, Stephen G Sligar, et al.
Advances in Biochemical Engineering/Biotechnology|January 26, 2008
Investigating protein-protein interactions by far-WesternsCatherine S Chan, Tara M L Winstone, Raymond J Turner
Journal of Bacteriology|January 20, 2009
Differential Interactions between Tat-specific redox enzyme peptides and their chaperonesCatherine S Chan, Limei Chang, Kenton L Rommens, et al.
FEBS Letters|October 27, 2010
Comparing system-specific chaperone interactions with their Tat dependent redox enzyme substratesCatherine S Chan, Limei Chang, Tara M L Winstone, et al.
Biochemistry|June 1, 2007
The TatA subunit of Escherichia coli twin-arginine translocase has an N-in topologyCatherine S Chan, Marian R Zlomislic, D Peter Tieleman, et al.
Biochemical and Biophysical Research Communications|March 17, 2006
Twin-arginine translocase may have a role in the chaperone function of NarJ from Escherichia coliCatherine S Chan, Jenika M Howell, Matthew L Workentine, et al.
Biochimica Et Biophysica Acta|June 21, 2011
Towards understanding the Tat translocation mechanism through structural and biophysical studies of the amphipathic region of TatA from Escherichia coliCatherine S Chan, Evan F Haney, Hans J Vogel, et al.
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
Advances in Experimental Medicine and Biology|December 2, 2015
Biogenesis of Escherichia coli DMSO Reductase: A Network of Participants for Protein Folding and Complex Enzyme MaturationCatherine S Chan, Raymond J Turner
Journal of Visualized Experiments : Jove|September 7, 2012
A step-by-step method for the reconstitution of an ABC transporter into nanodisc lipid particlesHuan Bao, Franck Duong, Catherine S Chan
BMC Evolutionary Biology|June 13, 2015
NarJ subfamily system specific chaperone diversity and evolution is directed by respiratory enzyme associationsDenice C Bay, Catherine S Chan, Raymond J Turner
Proceedings of the National Academy of Sciences of the United States of America|March 2, 2012
Two copies of the SecY channel and acidic lipids are necessary to activate the SecA translocation ATPaseKush Dalal, Catherine S Chan, Stephen G Sligar, et al.
Advances in Biochemical Engineering/Biotechnology|January 26, 2008
Investigating protein-protein interactions by far-WesternsCatherine S Chan, Tara M L Winstone, Raymond J Turner
Journal of Bacteriology|January 20, 2009
Differential Interactions between Tat-specific redox enzyme peptides and their chaperonesCatherine S Chan, Limei Chang, Kenton L Rommens, et al.
FEBS Letters|October 27, 2010
Comparing system-specific chaperone interactions with their Tat dependent redox enzyme substratesCatherine S Chan, Limei Chang, Tara M L Winstone, et al.
Biochemistry|June 1, 2007
The TatA subunit of Escherichia coli twin-arginine translocase has an N-in topologyCatherine S Chan, Marian R Zlomislic, D Peter Tieleman, et al.
Biochemical and Biophysical Research Communications|March 17, 2006
Twin-arginine translocase may have a role in the chaperone function of NarJ from Escherichia coliCatherine S Chan, Jenika M Howell, Matthew L Workentine, et al.
Biochimica Et Biophysica Acta|June 21, 2011
Towards understanding the Tat translocation mechanism through structural and biophysical studies of the amphipathic region of TatA from Escherichia coliCatherine S Chan, Evan F Haney, Hans J Vogel, et al.
Pageof 2