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Jon Marles-Wright

Showing results (11-20 of 52) with videos related to

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Journal of Bacteriology|December 17, 2008
Synthesis of CDP-activated ribitol for teichoic acid precursors in Streptococcus pneumoniaeStefanie Baur, Jon Marles-Wright, Stephan Buckenmaier, et al.
Sub-Cellular Biochemistry|March 9, 2017
Structure and Function of the Stressosome Signalling HubJan Pané-Farré, Maureen B Quin, Richard J Lewis, et al.
Acta Crystallographica. Section F, Structural Biology and Crystallization Communications|March 8, 2008
Crystallization and preliminary X-ray analysis of RsbS from Moorella thermoacetica at 2.5 A resolutionMaureen Quin, Joseph Newman, Susan Firbank, et al.
Methods in Enzymology|October 30, 2025
Characterisation and engineering of thermostable PLP-dependent alpha-oxoamine synthases (AOSs); versatile C-C bond forming biocatalystsDaniel Joynt, Sam Mathew, Ben Ashley, et al.
BMC Systems Biology|January 17, 2013
Simulations of stressosome activation emphasize allosteric interactions between RsbR and RsbTUlf W Liebal, Thomas Millat, Jon Marles-Wright, et al.
Organic & Biomolecular Chemistry|July 18, 2017
Structural evidence for the covalent modification of FabH by 4,5-dichloro-1,2-dithiol-3-one (HR45)Alexander G Ekström, Van Kelly, Jon Marles-Wright, et al.
Plos One|November 13, 2012
Structural insight into the Clostridium difficile ethanolamine utilisation microcompartmentAlison C Pitts, Laura R Tuck, Alexandra Faulds-Pain, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 12, 2025
Structure and encapsulation of carbonic anhydrase within the α-carboxysomePei Cing Ng, Oluwatobi Adegbite, Tianpei Li, et al.
Structure (London, England : 1993)|February 14, 2012
The bacterial stressosome: a modular system that has been adapted to control secondary messenger signalingMaureen B Quin, John M Berrisford, Joseph A Newman, et al.
The Journal of Biological Chemistry|June 29, 2019
An extracellular acidic cleft confers profound H<sup>+</sup>-sensitivity to epithelial sodium channels containing the δ-subunit in <i>Xenopus laevis</i>Lukas Wichmann, Jasdip Singh Dulai, Jon Marles-Wright, et al.
Pageof 6

Showing results (11-20 of 52) with videos related to

Sort By:
Pageof 6
Journal of Bacteriology|December 17, 2008
Synthesis of CDP-activated ribitol for teichoic acid precursors in Streptococcus pneumoniaeStefanie Baur, Jon Marles-Wright, Stephan Buckenmaier, et al.
Sub-Cellular Biochemistry|March 9, 2017
Structure and Function of the Stressosome Signalling HubJan Pané-Farré, Maureen B Quin, Richard J Lewis, et al.
Acta Crystallographica. Section F, Structural Biology and Crystallization Communications|March 8, 2008
Crystallization and preliminary X-ray analysis of RsbS from Moorella thermoacetica at 2.5 A resolutionMaureen Quin, Joseph Newman, Susan Firbank, et al.
Methods in Enzymology|October 30, 2025
Characterisation and engineering of thermostable PLP-dependent alpha-oxoamine synthases (AOSs); versatile C-C bond forming biocatalystsDaniel Joynt, Sam Mathew, Ben Ashley, et al.
BMC Systems Biology|January 17, 2013
Simulations of stressosome activation emphasize allosteric interactions between RsbR and RsbTUlf W Liebal, Thomas Millat, Jon Marles-Wright, et al.
Organic & Biomolecular Chemistry|July 18, 2017
Structural evidence for the covalent modification of FabH by 4,5-dichloro-1,2-dithiol-3-one (HR45)Alexander G Ekström, Van Kelly, Jon Marles-Wright, et al.
Plos One|November 13, 2012
Structural insight into the Clostridium difficile ethanolamine utilisation microcompartmentAlison C Pitts, Laura R Tuck, Alexandra Faulds-Pain, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 12, 2025
Structure and encapsulation of carbonic anhydrase within the α-carboxysomePei Cing Ng, Oluwatobi Adegbite, Tianpei Li, et al.
Structure (London, England : 1993)|February 14, 2012
The bacterial stressosome: a modular system that has been adapted to control secondary messenger signalingMaureen B Quin, John M Berrisford, Joseph A Newman, et al.
The Journal of Biological Chemistry|June 29, 2019
An extracellular acidic cleft confers profound H<sup>+</sup>-sensitivity to epithelial sodium channels containing the δ-subunit in <i>Xenopus laevis</i>Lukas Wichmann, Jasdip Singh Dulai, Jon Marles-Wright, et al.
Pageof 6