Excited to share our new book chapter! We summarize recent advances in the structures and mechanisms of non-fimbrial adhesins in biofilm formation, with perspectives on upcoming discoveries in this field. #BiofilmResearch#Adhesins
https://t.co/8XY9mtiF8c
Just in time for #WAAW, collab with the Strynadka lab @UBC - Cryo-EM characterization of the anydromuropeptide permease AmpG central to bacterial fitness and β-lactam antibiotic resistance. @McMasterIIDR @BBS_McMasterU #AMR https://t.co/a1N8GKOI0l
Happy and proud to see this paper online! We resolved the in-situ architecture of the P. aeruginosa Type IV pilus machine and discovered the localisation and role of PilY1. Great collaboration with @JunLiuLab@Dr_Lori_Burrows@BrunLabCaulo @PLynneHowell . https://t.co/BlauVhnAxS
15/ Many thanks to members of my lab for their tremendous support and to @RubinsteinJohn lab members (@think_zesty, @CourbonGautier, @hanlinw222, Hui Guo, @JustinDiTrani, @SBenlekbir, Zhijie Li) for teaching me #cryoem from scratch.
Happy reading!
https://t.co/nWqKIn4zuK
Happy to share my first PhD paper from @PLynneHowell lab with my fantastic post-doc mentor @gregbwhitfield from @BrunLabCaulo as well as @Dr_Lori_Burrows and @RubinsteinJohn with #cryoem support where we propose how the bifunctional Tad pilus motor works🧵 https://t.co/nWqKIn4zuK
14/ I would also like to acknowledge a complementary study from Harry Low's lab, where they propose a different CpaF catalytic mechanism.
https://t.co/Qjs3YpR6rL
1/ #CryoSPARC v4.6 is out! 🚀Up to 2.1x faster refinements and classification, a new job tree view that is scalable and performant on large #cryoEM projects, job groups, new cards and table view, automatic inspect picks, and more!
https://t.co/M3mLGtFPIq