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1.
Microbiologyopen ; 6(2)2017 04.
Article in English | MEDLINE | ID: mdl-27762083

ABSTRACT

Rhodococcus equi (R. equi) is an important pulmonary pathogen in foals that often leads to the death of the horse. The bacterium harbors a virulence plasmid that encodes numerous virulence-associated proteins (Vaps) including VapA that is essential for intracellular survival inside macrophages. However, little is known about the precise function of VapA. Here, we demonstrate that VapA causes perturbation to late endocytic organelles with swollen endolysosome organelles having reduced Cathepsin B activity and an accumulation of LBPA, LC3 and Rab7. The data are indicative of a loss of endolysosomal function, which leads cells to upregulate lysosome biogenesis to compensate for the loss of functional endolysosomes. Although there is a high degree of homology of the core region of VapA to other Vap proteins, only the highly conserved core region of VapA, and not VapD of VapG, gives the observed effects on endolysosomes. This is the first demonstration of how VapA works and implies that VapA aids R. equi survival by reducing the impact of lysosomes on phagocytosed bacteria.


Subject(s)
Actinomycetales Infections/pathology , Bacterial Proteins/metabolism , Bronchopneumonia/microbiology , Cathepsin B/metabolism , Horse Diseases/pathology , Lysosomes/pathology , Rhodococcus equi/pathogenicity , Actinomycetales Infections/microbiology , Animals , Base Sequence , Cell Line, Tumor , Gene Expression Regulation, Bacterial , HeLa Cells , Horse Diseases/microbiology , Horses , Humans , Lysosomes/microbiology , Macrophages/microbiology , Phagocytosis , Rats , Virulence Factors
2.
Acta Neuropathol ; 126(2): 207-18, 2013 Aug.
Article in English | MEDLINE | ID: mdl-23728790

ABSTRACT

Focal cortical dysplasia (FCD) is a localized malformation of cortical development and is the commonest cause of severe childhood epilepsy in surgical practice. Children with FCD are severely disabled by their epilepsy, presenting with frequent seizures early in life. The commonest form of FCD in children is characterized by the presence of an abnormal population of cells, known as balloon cells. Similar pathological changes are seen in the cortical malformations that characterize patients with tuberous sclerosis complex (TSC). However, the cellular and molecular mechanisms that underlie the malformations of FCD and TSC are not well understood. We provide evidence for a defect in autophagy in FCD and TSC. We have found that balloon cells contain vacuoles that include components of the autophagy pathway. Specifically, we show that balloon cells contain prominent lysosomes by electron microscopy, immunohistochemistry for LAMP1 and LAMP2, LysoTracker labelling and enzyme histochemistry for acid phosphatase. Furthermore, we found that balloon cells contain components of the ATG pathway and that there is cytoplasmic accumulation of the regulator of autophagy, DOR. Most importantly we found that there is abnormal accumulation of the autophagy cargo protein, p62. We show that this defect in autophagy can be, in part, reversed in vitro by inhibition of the mammalian target of rapamycin (mTOR) suggesting that abnormal activation of mTOR may contribute directly to a defect in autophagy in FCD and TSC.


Subject(s)
Autophagy/physiology , Brain Diseases/pathology , Lysosomes/pathology , Malformations of Cortical Development/pathology , TOR Serine-Threonine Kinases/physiology , Tuberous Sclerosis/pathology , Acid Phosphatase/metabolism , Adaptor Proteins, Signal Transducing/metabolism , Brain/abnormalities , Brain/metabolism , Brain/pathology , Brain Diseases/metabolism , Cells, Cultured , Child , Cytoplasm/metabolism , Cytoplasm/pathology , Epilepsy , Humans , Immunohistochemistry , Lysosomal-Associated Membrane Protein 2 , Lysosomal Membrane Proteins/metabolism , Lysosomes/ultrastructure , Malformations of Cortical Development/metabolism , Malformations of Cortical Development, Group I , Sequestosome-1 Protein , TOR Serine-Threonine Kinases/metabolism , Tissue Banks , Tuberous Sclerosis/metabolism
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