Related Experiment Video
Updated: Mar 10, 2026

Humanized Mouse Model to Study Bacterial Infections Targeting the Microvasculature
Published on: April 1, 2014
Attenuation of the Type IV Pilus Retraction Motor Influences Neisseria gonorrhoeae Social and Infection Behavior
Alyson M Hockenberry1,2, Danielle M Hutchens3,2, Al Agellon4
1Department of Immunobiology, University of Arizona, Tucson, Arizona, USA alyson.hockenberry@gmail.com somaggie@email.arizona.edu.
Abstract:
Retraction of the type IV pilus (Tfp) mediates DNA uptake, motility, and social and infection behavior in a wide variety of prokaryotes. To date, investigations into Tfp retraction-dependent activities have used a mutant deleted of PilT, the ATPase motor protein that causes the pilus fiber to retract. ΔpilT cells are nontransformable, nonmotile, and cannot aggregate into microcolonies. We tested the hypothesis that these retraction-dependent activities are sensitive to the strength of PilT enzymatic activity by using the pathogen Neisseria gonorrhoeae as a model. We constructed an N. gonorrhoeae mutant with an amino acid substitution in the PilT Walker B box (a substitution of cysteine for leucine at position 201, encoded by pilTL201C). Purified PilTL201C forms a native hexamer, but mutant hexamers hydrolyze ATP at half the maximal rate. N. gonorrhoeae pilTL201C cells produce Tfp fibers, crawl at the same speed as the wild-type (wt) parent, and are equally transformable. However, the social behavior of pilTL201C cells is intermediate between the behaviors of wt and ΔpilT cells. The infection behavior of pilTL201C is also defective, due to its failure to activate the epidermal growth factor receptor (EGFR)-heparin-binding EGF-like growth factor (HB-EGF) pathway. Our study indicates that pilus retraction, per se, is not sufficient for N. gonorrhoeae microcolony formation or infectivity; rather, these activities are sensitive to the strength of PilT enzymatic activity. We discuss the implications of these findings for Neisseria pathogenesis in the context of mechanobiology.
Importance:
Type IV pili are fibers expressed on the surface of many bacteria. Neisseria gonorrhoeae cells crawl, take up DNA, and communicate with each other and with human cells by retracting these fibers. Here, we show that an N. gonorrhoeae mutant expressing an enzymatically weakened type IV pilus retraction motor still crawls and takes up DNA normally. However, mutant cells exhibit abnormal social behavior, and they are less infective because they fail to activate the epidermal growth factor receptor. Our study shows that N. gonorrhoeae social and infection behaviors are sensitive to the strength of the retraction motor enzyme.
Insights
Type IV pilus retraction is crucial for Neisseria gonorrhoeae's social and infection behaviors. Weakening the PilT motor enzyme affects these activities, showing they depend on motor strength, not just retraction itself.
Area of Science:
- Microbiology
- Molecular Biology
- Bacterial Pathogenesis
Background:
- Type IV pili (Tfp) mediate essential bacterial functions like DNA uptake, motility, and social behaviors.
- PilT is the ATPase motor protein responsible for Tfp retraction, and its absence (ΔpilT) abolishes these functions.
- Investigating the role of PilT's enzymatic activity strength is key to understanding Tfp-dependent behaviors.
Purpose of the Study:
- To test if Type IV pilus retraction-dependent activities in Neisseria gonorrhoeae are sensitive to the strength of PilT enzymatic activity.
- To characterize the behavior of N. gonorrhoeae with a weakened PilT motor (PilTL201C mutant).
Main Methods:
- Construction of an N. gonorrhoeae mutant (pilTL201C) with a specific amino acid substitution in the PilT Walker B box, reducing ATP hydrolysis rate.
- Analysis of Tfp production, motility, DNA uptake (transformation), social behavior (microcolony formation), and infection behavior (EGFR-HB-EGF pathway activation) in wild-type, ΔpilT, and pilTL201C strains.
Main Results:
- The pilTL201C mutant produced Tfp, exhibited wild-type motility and transformability, but showed intermediate social behavior compared to wild-type and ΔpilT cells.
- Infection behavior was defective in the pilTL201C mutant due to impaired activation of the EGFR-HB-EGF pathway.
- PilT enzymatic activity strength, not just retraction, is critical for N. gonorrhoeae's social and infection behaviors.
Conclusions:
- Pilus retraction alone is insufficient for N. gonorrhoeae microcolony formation and infectivity; these processes are sensitive to the PilT motor's enzymatic activity strength.
- Findings highlight the mechanobiological aspects of Neisseria pathogenesis and the nuanced role of Type IV pili.
Related Concept Videos
Fimbriae, Pili, and Axial Filaments
Mechanism of Conjugation
Gene Regulation in Microbial Communities: Quorum Sensing
Intracellular Movement of Viruses and Bacteria

