The canonical PilT retraction ATPase promotes both extension and retraction of the MSHA type IVa pilus in Vibrio cholerae
Hughes, H. Q.; Dalia, T. N.; Ellison, C. K.; Dalia, A. B.
Show abstract
Diverse bacterial species use type IVa pili (T4aP) to interact with their environments. The dynamic extension and retraction of T4aP is critical for their function, but the mechanisms that regulate this dynamic activity remain poorly understood. T4aP are typically extended via the activity of a dedicated extension motor ATPase and retracted via the action of an antagonistic retraction motor ATPase called PilT. These motors are generally functionally independent, and loss of PilT commonly results in T4aP hyperpiliation due to undeterred pilus extension. However, for the mannose-sensitive hemagglutinin (MSHA) T4aP of Vibrio cholerae, the loss of PilT results in a loss of surface piliation, which is unexpected based on our current understanding of T4aP dynamics. Here, we employ a combination of genetic and cell biological approaches to dissect the underlying mechanism. Our results demonstrate that PilT is necessary for MSHA pilus extension in addition to its well-established role in promoting MSHA pilus retraction. Through a suppressor screen, we also provide genetic evidence that the MshA major pilin impacts pilus extension. Together, these findings contribute to our understanding of the factors that regulate pilus extension and describe a previously uncharacterized function for the PilT motor ATPase. AUTHOR SUMMARYMany bacteria use filamentous appendages called type IVa pili to interact with their environment. These fibers dynamically extend and retract through the activity of ATPase motor proteins. In most pilus systems, deletion of the retraction motor results in uninterrupted pilus extension, leading to hyperpiliation. However, in the MSHA pilus system of V. cholerae, deletion of the retraction motor, pilT, results in a decrease in the number of surface pili. Here, we show that PilT is unexpectedly required for MSHA pilus extension in addition to its defined role in promoting pilus retraction. These results extend our understanding of the complex mechanisms underlying the dynamic activity of these broadly conserved filamentous appendages.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- An unbroken network of interactions connecting flagellin domains is required for motility in viscous environments 95%
- Fluorescent secreted bacterial effectors reveal active intravacuolar proliferation of Listeria monocytogenes in epithelial cells 95%
- The polyadenylase PAPI is required for virulence plasmid maintenance in pathogenic bacteria 94%
Similar papers in this journal
- Modulation of bacterial cell size and growth rate via activation of a cell envelope stress response 97%
- Stimulation of the Caulobacter crescentus surface sensing pathway by deletion of a specialized minor pilin-like gene 96%
- A Second Role for the Second Messenger Cyclic-di-GMP in E. coli: Arresting Cell Growth by Altering Metabolic Flow 96%
Similar papers in this journal
- Twitching motility suppressors reveal a role for FimX in type IV pilus extension dynamics 96%
- Chimeric systems composed of swapped Tra subunits between distantly-related F plasmids reveal striking plasticity among type IV secretion machines 96%
- Two transmembrane transcriptional regulators coordinate to activate chitin-induced natural transformation in Vibrio cholerae 96%
Similar papers in this journal
- Three PilZ domain proteins, PlpA, PixA and PixB, have distinct functions in regulation of motility and development in Myxococcus xanthus 96%
- Retraction ATPase motors from three orthologous type IVa pilus systems support promiscuous retraction of the Vibrio cholerae competence pilus 95%
- Combinatorial control of type IVa pili formation by the four polarized regulators MglA, SgmX, FrzS and SopA 95%
Similar papers in this journal
- Wag31, a membrane tether, is crucial for lipid homeostasis in mycobacteria 95%
- A dynamic bactofilin cytoskeleton cooperates with an M23 endopeptidase to control bacterial morphogenesis 95%
- Function and firing of the Streptomyces coelicolor contractile injection system requires the membrane protein CisA 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.