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Trends in Biochemical Sciences|August 25, 2021
Translocation expands the scope of the large clostridial toxin familyKathleen E Orrell, Roman A Melnyk
Microbiology and Molecular Biology Reviews : MMBR|June 2, 2021
Large Clostridial Toxins: Mechanisms and Roles in DiseaseKathleen E Orrell, Roman A Melnyk
Critical Reviews in Biochemistry and Molecular Biology|May 27, 2017
Clostridium difficile toxins A and B: Receptors, pores, and translocation into cellsKathleen E Orrell, Zhifen Zhang, Seiji N Sugiman-Marangos, et al.
Nature Communications|January 25, 2020
The C. difficile toxin B membrane translocation machinery is an evolutionarily conserved protein delivery apparatusKathleen E Orrell, Michael J Mansfield, Andrew C Doxey, et al.
Biomacromolecules|September 22, 2017
Structural and Mechanical Roles for the C-Terminal Nonrepetitive Domain Become Apparent in Recombinant Spider Aciniform SilkLingling Xu, Thierry Lefèvre, Kathleen E Orrell, et al.
FEBS Letters|September 3, 2013
Nanoparticle self-assembly by a highly stable recombinant spider wrapping silk protein subunitLingling Xu, Marie-Laurence Tremblay, Kathleen E Orrell, et al.
Communications Biology|April 20, 2022
Structures of distant diphtheria toxin homologs reveal functional determinants of an evolutionarily conserved toxin scaffoldSeiji N Sugiman-Marangos, Shivneet K Gill, Michael J Mansfield, et al.
Journal of Molecular Biology|July 11, 2018
Direct Detection of Membrane-Inserting Fragments Defines the Translocation Pores of a Family of Pathogenic ToxinsKathleen E Orrell, Åsa Tellgren-Roth, Mercedes Di Bernardo, et al.
Scientific Reports|June 27, 2015
Spider wrapping silk fibre architecture arising from its modular soluble protein precursorMarie-Laurence Tremblay, Lingling Xu, Thierry Lefèvre, et al.
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