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Separating Bacteria by Capsule Amount Using a Discontinuous Density Gradient
Published on: January 7, 2019
Klebsiella pneumoniae inhibits vasodilation through capsule and T6SS-dependent pathways
Safi Rehman1, Joana Sa-Pessoa1,2, Charlotte Buckley3
1Wellcome-Wolfson Institute for Experimental Medicine, School of Medicine, Dentistry and Biomedical Sciences, Queen's University Belfast, Belfast, UK.
Abstract:
Vasodilation is a defence mechanism during inflammation and infection that is regulated by nitric oxide produced by endothelial nitric oxide synthase (eNOS) and the generation of endothelium-dependent hyperpolarization. Several viral infections have been shown to alter vascular biology, but effects of bacterial pathogens are unclear. Here using an ex vivo blood vessel model and human primary endothelial cells, we show that Klebsiella pneumoniae, a prevalent bloodstream pathogen, inhibits vasodilation pathways. The type VI secretion system (T6SS) effector VgrG4 activates the mitochondrial receptor NLRX1, which leads to increased mitochondrial reactive oxygen species and phosphorylation of the eNOS inhibitory site by the kinase PKCβ, which in turn reduces eNOS activity. K. pneumoniae capsule polysaccharide also activates the phosphatase PP2Ac, which reduces phosphorylation of the eNOS activation site. VgrG4-induced mitochondrial reactive oxygen species attenuate endothelium-dependent hyperpolarization by impairing signalling of the Ca2+-activated K+ channel axis. This work reveals that T6SS activity can modulate host vascular biology by targeting eNOS post-translational modifications.
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