نتایج جستجو برای: type iv pilin

تعداد نتایج: 1487281  

2016
Grace A Maldarelli Hanover Matz Si Gao Kevin Chen Therwa Hamza Harris G Yfantis Hanping Feng Michael S Donnenberg

Clostridium difficile is the leading cause of nosocomial infections in the United States, adding billions of dollars per year to health care costs. A vaccine targeted against the bacterium would be extremely beneficial in decreasing the morbidity and mortality caused by C. difficile-associated disease; a vaccine directed against a colonization factor would hinder the spread of the bacterium as ...

Journal: :Biochemistry 2001
J Y Suh L Spyracopoulos D W Keizer R T Irvin B D Sykes

Pilin is the major structural protein that forms type IV pili of various pathogenic bacteria, including Pseudomonas aeruginosa. Pilin is involved in attachment of the bacterium to host cells during infection, in the initiation of immune response, and serves as a receptor for a variety of bacteriophage. We have used (15)N nuclear magnetic resonance relaxation measurements to probe the backbone d...

Journal: :Journal of bacteriology 1998
D Wall S S Wu D Kaiser

Myxococcus xanthus tgl mutants lack social motility and type IV pili but can be transiently stimulated to swarm and to make pili by contacting tgl+ cells. The absence of pili in tgl mutants is shown not to be due to the absence of pilin. The rate of pilus elongation after Tgl stimulation is shown to be similar to the rate of pilus elongation in wild-type cells, using a new more rapid assay for ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2013
Ana Cehovin Peter J Simpson Melanie A McDowell Daniel R Brown Rossella Noschese Mitchell Pallett Jacob Brady Geoffrey S Baldwin Susan M Lea Stephen J Matthews Vladimir Pelicic

Natural transformation is a dominant force in bacterial evolution by promoting horizontal gene transfer. This process may have devastating consequences, such as the spread of antibiotic resistance or the emergence of highly virulent clones. However, uptake and recombination of foreign DNA are most often deleterious to competent species. Therefore, model naturally transformable gram-negative bac...

Journal: :Journal of bacteriology 2000
S Graupner V Frey R Hashemi M G Lorenz G Brandes W Wackernagel

Pseudomonas stutzeri lives in terrestrial and aquatic habitats and is capable of natural genetic transformation. After transposon mutagenesis, transformation-deficient mutants were isolated from a P. stutzeri JM300 strain. In one of them a gene which coded for a protein with 75% amino acid sequence identity to PilC of Pseudomonas aeruginosa, an accessory protein for type IV pilus biogenesis, wa...

Journal: :Infection and immunity 2012
Terry Brissac Guillain Mikaty Guillaume Duménil Mathieu Coureuil Xavier Nassif

Neisseria meningitidis crosses the blood-brain barrier (BBB) following the activation of the β2-adrenergic receptor by the type IV pili (TFP). Two components of the type IV pili recruit the β2-adrenergic receptor, the major pilin PilE and the minor pilin PilV. Here, we report that a strain deleted of PilX, one of the three minor pilins, is defective in endothelial cell signaling. The signaling ...

2016
Chuanjun Shu Ke Xiao Qin Yan Xiao Sun

During anaerobic respiration, the bacteria Geobacter sulfurreducens can transfer electrons to extracellular electron accepters through its pilus. G. sulfurreducens pili have been reported to have metallic-like conductivity that is similar to doped organic semiconductors. To study the characteristics and origin of conductive pilin proteins found in the pilus structure, their genetic, structural,...

Journal: :Molecular cell 2006
Lisa Craig Niels Volkmann Andrew S Arvai Michael E Pique Mark Yeager Edward H Egelman John A Tainer

Type IV pili (T4P) are long, thin, flexible filaments on bacteria that undergo assembly-disassembly from inner membrane pilin subunits and exhibit astonishing multifunctionality. Neisseria gonorrhoeae (gonococcal or GC) T4P are prototypic virulence factors and immune targets for increasingly antibiotic-resistant human pathogens, yet detailed structures are unavailable for any T4P. Here, we dete...

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