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Aeromonas salmonicida ‐secreted protein AopP is a potent inducer of apoptosis in a mammalian and a Drosophila model
Author(s) -
Jones Rheinallt M.,
Luo Liping,
Moberg Kenneth H.
Publication year - 2012
Publication title -
cellular microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.542
H-Index - 138
eISSN - 1462-5822
pISSN - 1462-5814
DOI - 10.1111/j.1462-5822.2011.01717.x
Subject(s) - biology , innate immune system , effector , microbiology and biotechnology , aeromonas salmonicida , secretion , drosophila melanogaster , immune system , apoptosis , immunology , bacteria , gene , genetics , biochemistry
Summary Some pathogens are able to establish themselves within the host because they have evolved mechanisms to disrupt host innate immunity. For example, a number of pathogens secrete preformed effector proteins via type III secretion apparatuses that influence innate immune or apoptotic signalling pathways. One group of effector proteins that usurp innate immune signalling is the YopJ‐like family of bacterial effector proteins, which includes AopP from Aeromonas salmonicida. Aeromonas species are known to cause gastrointestinal disease in humans, and are associated mainly with subcutaneous wound infections and septicaemia in other metazoans, particularly fish. AopP has been reported to have inhibitory activity against the NF‐κB pathway in cultured cells, although the pathological outcomes of AopP activity have not been examined. Here, we show that AopP has potent pro‐apoptotic activity when expressed in cultured mammalian macrophage or epithelial cells, or when ectopically expressed in Drosophila melanogaster haemocytes or imaginal disk epithelial cells. Furthermore, apoptosis was significantly elevated upon concurrent AopP expression and TNF‐α cellular stimulation. Together, our results demonstrate how the specificity of a YopJ‐like protein towards signalling pathways directly governs cellular pathological outcome in disease.

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