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Jochen Zimmer

Showing results (41-50 of 59) with videos related to

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Proceedings of the National Academy of Sciences of the United States of America|October 16, 2013
BcsA and BcsB form the catalytically active core of bacterial cellulose synthase sufficient for in vitro cellulose synthesisOkako Omadjela, Adishesh Narahari, Joanna Strumillo, et al.
Chemical Science|May 5, 2016
Simulations of cellulose translocation in the bacterial cellulose synthase suggest a regulatory mechanism for the dimeric structure of celluloseBrandon C Knott, Michael F Crowley, Michael E Himmel, et al.
Nature Structural & Molecular Biology|September 25, 2024
Structural insights into translocation and tailored synthesis of hyaluronanIreneusz Górniak, Zachery Stephens, Satchal K Erramilli, et al.
Nature Communications|February 20, 2019
A lipid gating mechanism for the channel-forming O antigen ABC transporterChristopher A Caffalette, Robin A Corey, Mark S P Sansom, et al.
Glycobiology|December 1, 2017
Distinct reaction mechanisms for hyaluronan biosynthesis in different kingdoms of lifeMatthew R Blackburn, Caitlin Hubbard, Volker Kiessling, et al.
Biomacromolecules|August 29, 2024
How Many Glucan Chains Form Plant Cellulose Microfibrils? A Mini ReviewDaniel J Cosgrove, Paul Dupree, Enrique D Gomez, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 18, 2013
Tertiary model of a plant cellulose synthaseLatsavongsakda Sethaphong, Candace H Haigler, James D Kubicki, et al.
Nature|October 17, 2008
A role for the two-helix finger of the SecA ATPase in protein translocationKarl J Erlandson, Stephanie B M Miller, Yunsun Nam, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 21, 2016
A single heterologously expressed plant cellulose synthase isoform is sufficient for cellulose microfibril formation in vitroPallinti Purushotham, Sung Hyun Cho, Sara M Díaz-Moreno, et al.
Nature|March 10, 2016
Observing cellulose biosynthesis and membrane translocation in crystalloJacob L W Morgan, Joshua T McNamara, Michael Fischer, et al.
Pageof 6

Showing results (41-50 of 59) with videos related to

Sort By:
Pageof 6
Proceedings of the National Academy of Sciences of the United States of America|October 16, 2013
BcsA and BcsB form the catalytically active core of bacterial cellulose synthase sufficient for in vitro cellulose synthesisOkako Omadjela, Adishesh Narahari, Joanna Strumillo, et al.
Chemical Science|May 5, 2016
Simulations of cellulose translocation in the bacterial cellulose synthase suggest a regulatory mechanism for the dimeric structure of celluloseBrandon C Knott, Michael F Crowley, Michael E Himmel, et al.
Nature Structural & Molecular Biology|September 25, 2024
Structural insights into translocation and tailored synthesis of hyaluronanIreneusz Górniak, Zachery Stephens, Satchal K Erramilli, et al.
Nature Communications|February 20, 2019
A lipid gating mechanism for the channel-forming O antigen ABC transporterChristopher A Caffalette, Robin A Corey, Mark S P Sansom, et al.
Glycobiology|December 1, 2017
Distinct reaction mechanisms for hyaluronan biosynthesis in different kingdoms of lifeMatthew R Blackburn, Caitlin Hubbard, Volker Kiessling, et al.
Biomacromolecules|August 29, 2024
How Many Glucan Chains Form Plant Cellulose Microfibrils? A Mini ReviewDaniel J Cosgrove, Paul Dupree, Enrique D Gomez, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 18, 2013
Tertiary model of a plant cellulose synthaseLatsavongsakda Sethaphong, Candace H Haigler, James D Kubicki, et al.
Nature|October 17, 2008
A role for the two-helix finger of the SecA ATPase in protein translocationKarl J Erlandson, Stephanie B M Miller, Yunsun Nam, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 21, 2016
A single heterologously expressed plant cellulose synthase isoform is sufficient for cellulose microfibril formation in vitroPallinti Purushotham, Sung Hyun Cho, Sara M Díaz-Moreno, et al.
Nature|March 10, 2016
Observing cellulose biosynthesis and membrane translocation in crystalloJacob L W Morgan, Joshua T McNamara, Michael Fischer, et al.
Pageof 6