Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A filamentous phage promotes meningococcal colonization by selecting hyperadhesive pili variants linking phage infection to bacterial virulence

View through CrossRef
Abstract Filamentous phages belong to Inoviruses, a family of non-lytic phages that are mutually beneficial to their bacterial hosts. These phages have a role in bacterial dissemination, biofilm formation or immune evasion. In Neisseria meningitidis, the strains harbouring the MDA filamentous phage are associated with invasive diseases through the MDAΦ key role in epithelial cell colonisation. Using MDAΦ and N. meningitidis as model organisms, we aimed to understand the relationship between filamentous phage infection, type IV pili antigenic variation and bacterial colonisation. The paradigm of filamentous phage infection has been defined for the phages Ff and CTX, where binding to the tips of bacterial type IV pili is a means of infecting their bacterial host. In contrast, we showed that MDAΦ binds N. meningitidis type IV pili along the length of the filament, rather than at the tip, with preferential binding to positively charged variants of PilE (the major fibre-forming pilin) demonstrating a role for antigenic variation in phage infection. Strikingly, bacteria expressing the more positively charged PilE were the most adhesive, meaning that MDAΦ primarily target the most adhesive bacteria. Finally, we showed that adhesion to human cells is sufficient to amplify the phage-positive meningococcal population. Taken together, this study reveals how the propagation strategy of a filamentous phage, aimed at selecting the best coloniser as a host, can promote the selection of hyperadhesive bacterial variants, linking phage infection to bacterial virulence.
Title: A filamentous phage promotes meningococcal colonization by selecting hyperadhesive pili variants linking phage infection to bacterial virulence
Description:
Abstract Filamentous phages belong to Inoviruses, a family of non-lytic phages that are mutually beneficial to their bacterial hosts.
These phages have a role in bacterial dissemination, biofilm formation or immune evasion.
In Neisseria meningitidis, the strains harbouring the MDA filamentous phage are associated with invasive diseases through the MDAΦ key role in epithelial cell colonisation.
Using MDAΦ and N.
meningitidis as model organisms, we aimed to understand the relationship between filamentous phage infection, type IV pili antigenic variation and bacterial colonisation.
The paradigm of filamentous phage infection has been defined for the phages Ff and CTX, where binding to the tips of bacterial type IV pili is a means of infecting their bacterial host.
In contrast, we showed that MDAΦ binds N.
meningitidis type IV pili along the length of the filament, rather than at the tip, with preferential binding to positively charged variants of PilE (the major fibre-forming pilin) demonstrating a role for antigenic variation in phage infection.
Strikingly, bacteria expressing the more positively charged PilE were the most adhesive, meaning that MDAΦ primarily target the most adhesive bacteria.
Finally, we showed that adhesion to human cells is sufficient to amplify the phage-positive meningococcal population.
Taken together, this study reveals how the propagation strategy of a filamentous phage, aimed at selecting the best coloniser as a host, can promote the selection of hyperadhesive bacterial variants, linking phage infection to bacterial virulence.

Related Results

The electrically conductive pili of Geobacter soli
The electrically conductive pili of Geobacter soli
Abstract Electrically conductive pili (e-pili) enable electron transport over multiple cell lengths to extracellular environments and play an imp...
Identification of Seven Types of Pili in Mycobacterium tuberculosis: Using Atomic Force Microscopy
Identification of Seven Types of Pili in Mycobacterium tuberculosis: Using Atomic Force Microscopy
Background: Pili are polymeric, hydrophobic, proteinaceous structures generally composed of a major repeating subunit called pilin and, in some cases, a minor tip-assoc...
DNA Transformation and Type IV Pili in Neisseria gonorrhoeae
DNA Transformation and Type IV Pili in Neisseria gonorrhoeae
Transformation de l'ADN et pili de type IV chez Neisseria gonorrhoeae La résistance aux antibiotiques, évidente chez des souches telles que Neisseria gonorrhoeae, e...
Heart damage during meningococcal infection
Heart damage during meningococcal infection
Background. Meningococcal infection (MI) remains relevant in the modern world. In the Russian Federation, there is currently an increase in cases of meningococcal infection in the ...
Time to lysis determines phage sensitivity to a cytidine deaminase toxin/antitoxin bacterial defense system
Time to lysis determines phage sensitivity to a cytidine deaminase toxin/antitoxin bacterial defense system
ABSTRACT Toxin-antitoxin (TA) systems are ubiquitous two-gene loci that bacteria use to regulate cellular processes such as phage defense. Here, ...
Past and Future of Phage Therapy and Phage-Derived Proteins in Patients with Bone and Joint Infection
Past and Future of Phage Therapy and Phage-Derived Proteins in Patients with Bone and Joint Infection
Phage-derived therapies comprise phage therapy and the use of phage-derived proteins as anti-bacterial therapy. Bacteriophages are natural viruses that target specific bacteria. Th...
What makes a temperate phage an effective bacterial weapon?
What makes a temperate phage an effective bacterial weapon?
Abstract Temperate bacteriophages (phages) are common features of bacterial genomes and can act as self-amplifying biological weapons, killing su...

Back to Top