The Pseudomonas aeruginosa Exoenzyme Y: A Promiscuous Nucleotidyl Cyclase Edema Factor and Virulence Determinant
K Adam Morrow1,2, Dara W Frank3,4, Ron Balczon2,5
1Department of Physiology and Cell Biology, University of South Alabama, Mobile, AL, 36688, USA.
Abstract:
Exoenzyme Y (ExoY) was identified as a component of the Pseudomonas aeruginosa type 3 secretion system secretome in 1998. It is a common contributor to the arsenal of type 3 secretion system effectors, as it is present in approximately 90% of Pseudomonas isolates. ExoY has adenylyl cyclase activity that is dependent upon its association with a host cell cofactor. However, recent evidence indicates that ExoY is not just an adenylyl cyclase; rather, it is a promiscuous cyclase capable of generating purine and pyrimidine cyclic nucleotide monophosphates. ExoY's enzymatic activity causes a characteristic rounding of mammalian cells, due to microtubule breakdown. In endothelium, this cell rounding disrupts cell-to-cell junctions, leading to loss of barrier integrity and an increase in tissue edema. Microtubule breakdown seems to depend upon tau phosphorylation, where the elevation of cyclic nucleotide monophosphates activates protein kinases A and G and causes phosphorylation of endothelial microtubule associated protein tau. Phosphorylation is a stimulus for tau release from microtubules, leading to microtubule instability. Phosphorylated tau accumulates inside endothelium as a high molecular weight, oligomeric form, and is then released from the cell. Extracellular high molecular weight tau causes a transmissible cytotoxicity that significantly hinders cellular repair following infection. Thus, ExoY may contribute to bacterial virulence in at least two ways; first, by microtubule breakdown leading to loss of endothelial cell barrier integrity, and second, by promoting release of a high molecular weight tau cytotoxin that impairs cellular recovery following infection.
Insights
Pseudomonas aeruginosa Exoenzyme Y (ExoY) disrupts host cell microtubules, causing cell damage and impairing repair. This bacterial effector also releases a transmissible cytotoxin, hindering recovery from infection.
Area of Science:
- Microbiology
- Cell Biology
- Biochemistry
Background:
- Exoenzyme Y (ExoY) is a Pseudomonas aeruginosa type 3 secretion system effector found in ~90% of isolates.
- ExoY possesses adenylyl cyclase activity, but is a promiscuous cyclase generating various cyclic nucleotide monophosphates.
Purpose of the Study:
- To elucidate the mechanisms by which ExoY contributes to bacterial virulence.
- To investigate ExoY's role in endothelial cell dysfunction and host tissue damage.
Main Methods:
- Analysis of ExoY's enzymatic activity and host cell interactions.
- Microscopy to observe cellular effects like cell rounding and microtubule breakdown.
- Investigation of tau protein phosphorylation and its role in microtubule instability.
Main Results:
- ExoY induces mammalian cell rounding via microtubule breakdown.
- Endothelial cell barrier disruption and increased tissue edema result from ExoY activity.
- ExoY promotes tau phosphorylation, leading to microtubule destabilization and release of a transmissible cytotoxin.
Conclusions:
- ExoY contributes to Pseudomonas aeruginosa virulence by compromising endothelial barrier integrity.
- ExoY-induced release of high molecular weight tau impairs cellular repair mechanisms post-infection.


