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A Bacterial Acetyltransferase Destroys Plant Microtubule Networks and Blocks Secretion.

Authors :
Lee, Amy Huei-Yi
Hurley, Brenden
Felsensteiner, Corinna
Yea, Carmen
Ckurshumova, Wenzislava
Bartetzko, Verena
Wang, Pauline W.
Quach, Van
Lewis, Jennifer D.
Liu, Yulu C.
Börnke, Frederik
Angers, Stephane
Wilde, Andrew
Guttman, David S.
Desveaux, Darrell
Source :
PLoS Pathogens. Feb2012, Vol. 8 Issue 2, Special section p1-14. 14p. 1 Black and White Photograph, 2 Charts, 5 Graphs.
Publication Year :
2012

Abstract

The eukaryotic cytoskeleton is essential for structural support and intracellular transport, and is therefore a common target of animal pathogens. However, no phytopathogenic effector has yet been demonstrated to specifically target the plant cytoskeleton. Here we show that the Pseudomonas syringae type III secreted effector HopZ1a interacts with tubulin and polymerized microtubules. We demonstrate that HopZ1a is an acetyltransferase activated by the eukaryotic co-factor phytic acid. Activated HopZ1a acetylates itself and tubulin. The conserved autoacetylation site of the YopJ / HopZ superfamily, K289, plays a critical role in both the avirulence and virulence function of HopZ1a. Furthermore, HopZ1a requires its acetyltransferase activity to cause a dramatic decrease in Arabidopsis thaliana microtubule networks, disrupt the plant secretory pathway and suppress cell wall-mediated defense. Together, this study supports the hypothesis that HopZ1a promotes virulence through cytoskeletal and secretory disruption. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15537366
Volume :
8
Issue :
2
Database :
Academic Search Index
Journal :
PLoS Pathogens
Publication Type :
Academic Journal
Accession number :
73508302
Full Text :
https://doi.org/10.1371/journal.ppat.1002523