Fengbin Wang
University of Virginia
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Publication
Featured researches published by Fengbin Wang.
Nature Communications | 2017
Fengbin Wang; Andrew M. Burrage; Sandra Postel; Reece E. Clark; Albina Orlova; Eric J. Sundberg; Daniel B. Kearns; Edward H. Egelman
The bacterial flagellar filament has long been studied to understand how a polymer composed of a single protein can switch between different supercoiled states with high cooperativity. Here we present near-atomic resolution cryo-EM structures for flagellar filaments from both Gram-positive Bacillus subtilis and Gram-negative Pseudomonas aeruginosa. Seven mutant flagellar filaments in B. subtilis and two in P. aeruginosa capture two different states of the filament. These reliable atomic models of both states reveal conserved molecular interactions in the interior of the filament among B. subtilis, P. aeruginosa and Salmonella enterica. Using the detailed information about the molecular interactions in two filament states, we successfully predict point mutations that shift the equilibrium between those two states. Further, we observe the dimerization of P. aeruginosa outer domains without any perturbation of the conserved interior of the filament. Our results give new insights into how the flagellin sequence has been “tuned” over evolution.Bacterial flagellar filaments are composed almost entirely of a single protein—flagellin—which can switch between different supercoiled states in a highly cooperative manner. Here the authors present near-atomic resolution cryo-EM structures of nine flagellar filaments, and begin to shed light on the molecular basis of filament switching.
Nature Communications | 2017
Adam W. Avery; Michael E. Fealey; Fengbin Wang; Albina Orlova; Andrew R. Thompson; David D. Thomas; Thomas S. Hays; Edward H. Egelman
Spinocerebellar ataxia type 5 (SCA5) is a neurodegenerative disease caused by mutations in the cytoskeletal protein β-III-spectrin. Previously, a SCA5 mutation resulting in a leucine-to-proline substitution (L253P) in the actin-binding domain (ABD) was shown to cause a 1000-fold increase in actin-binding affinity. However, the structural basis for this increase is unknown. Here, we report a 6.9 Å cryo-EM structure of F-actin complexed with the L253P ABD. This structure, along with co-sedimentation and pulsed-EPR measurements, demonstrates that high-affinity binding caused by the CH2-localized mutation is due to opening of the two CH domains. This enables CH1 to bind actin aided by an unstructured N-terminal region that becomes α-helical upon binding. This helix is required for association with actin as truncation eliminates binding. Collectively, these results shed light on the mechanism by which β-III-spectrin, and likely similar actin-binding proteins, interact with actin, and how this mechanism can be perturbed to cause disease.The disease causing L253P mutation in the actin-binding domain (ABD) of β-III-spectrin drastically increases actin-binding affinity. Here, the authors present the cryo-EM structure of F-actin complexed with the ABD mutant and double electron–electron resonance measurements show how the mutation affects the ABD conformational state.
Biophysical Journal | 2018
Weili Zheng; Caitlin N. Spaulding; Henry L. Schreiber; Karen W. Dodson; Matt S. Conover; Fengbin Wang; Pontus Svenmarker; Areli Luna-Rico; Olivera Francetic; Magnus Andersson; Scott J. Hultgren; Edward H. Egelman
Urinary tract infections (UTIs) are caused by a wide range of pathogens, but the most common causative agent of UTIs is uropathogenic Escherichia coli (UPEC). Virtually all uropathogenic strains of ...
Structure | 2017
Weili Zheng; Fengbin Wang; Nicholas M.I. Taylor; Ricardo C. Guerrero-Ferreira; Petr G. Leiman; Edward H. Egelman
Structure | 2017
Fengbin Wang; Mathieu Coureuil; Tomasz Osinski; Albina Orlova; Tuba Altindal; Gael Gesbert; Xavier Nassif; Edward H. Egelman; Lisa Craig
eLife | 2018
Caitlin N. Spaulding; Henry L. Schreiber; Weili Zheng; Karen W. Dodson; Jennie E Hazen; Matt S. Conover; Fengbin Wang; Pontus Svenmarker; Areli Luna-Rico; Olivera Francetic; Magnus Andersson; Scott J. Hultgren; Edward H. Egelman
Nature Communications | 2018
Ying Liu; Tomasz Osinski; Fengbin Wang; Mart Krupovic; Stefan Schouten; Peter M. Kasson; David Prangishvili; Edward H. Egelman
Biophysical Journal | 2018
Fengbin Wang; Ying Liu; Thomas H. Edwards; Ulrich Baxa; Mart Krupovic; David Prangishvili; Edward H. Egelman
Biophysical Journal | 2018
Michael E. Fealey; Adam W. Avery; Fengbin Wang; Albina Orlova; Andrew R. Thompson; Edward H. Egelman; Thomas S. Hays; David D. Thomas
Biophysical Journal | 2018
Tomasz Osinski; Fengbin Wang; Ying Liu; Mart Krupovic; David Prangishvili; Edward H. Egelman