Litcius/Paper detail

Pseudomonas aeruginosa exoenzyme Y directly bundles actin filaments

Jordan M Mancl, Cristian Suarez, Wenguang Liang, David R. Kovar, Wei‐Jen Tang

2020Journal of Biological Chemistry17 citationsDOIOpen Access PDF

Abstract

, via an unknown mechanism. The actin cytoskeleton plays an important role in numerous key biological processes and is targeted by many pathogens to gain competitive advantages. We utilized total internal reflection fluorescence microscopy, bulk actin assays, and EM to investigate how ExoY impacts actin dynamics. We found that ExoY can directly bundle actin filaments with high affinity, comparable with eukaryotic F-actin-bundling proteins, such as fimbrin. Of note, ExoY enzymatic activity was not required for F-actin bundling. Bundling is known to require multiple actin-binding sites, yet small-angle X-ray scattering experiments revealed that ExoY is a monomer in solution, and previous data suggested that ExoY possesses only one actin-binding site. We therefore hypothesized that ExoY oligomerizes in response to F-actin binding and have used the ExoY structure to construct a dimer-based structural model for the ExoY-F-actin complex. Subsequent mutational analyses suggested that the ExoY oligomerization interface plays a crucial role in mediating F-actin bundling. Our results indicate that ExoY represents a new class of actin-binding proteins that modulate the actin cytoskeleton both directly, via F-actin bundling, and indirectly, via actin-activated nucleotidyl cyclase activity.

Topics & Concepts

ExoenzymePseudomonas aeruginosaActinMicrobiologyChemistryBiologyCell biologyBacteriaGeneticsBiochemical and Structural CharacterizationCellular transport and secretionMachine Learning in Bioinformatics