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Use of Galleria mellonella as a Model Organism to Study Legionella pneumophila Infection
Published on: November 22, 2013
The Legionella pneumophila effector SidL is an adenylyltransferase that modifies the glycolytic intermediate
Joshua J Black1, A Maxwell Burroughs2, Edrees H Rashan3
1Department of Molecular Biology & Genetics, Johns Hopkins University School of Medicine, Baltimore, MD, USA; Howard Hughes Medical Institute, Chevy Chase, MD, USA.
Abstract:
The large effector arsenal of the bacterial pathogen Legionella pneumophila has been a rich source of biochemistry, highlighting the immense diversity of strategies deployed in host-pathogen conflict. Here, we redefine the purported translation inhibitor SidL as an adenylyltransferase that targets a glycolytic metabolite, discovering that it modifies 3-phosphoglycerate with adenosine monophosphate (AMP) to produce the previously unknown molecule 2-AMP-3-phosphoglycerate. When expressed alone in mammalian cells, SidL adenylates 3-phosphoglycerate, disrupts glycolysis, and blocks the nutrient-responsive translation regulator mTORC1, which we propose indirectly causes translation inhibition. Moreover, we observe SidL-dependent production of 2-AMP-3-phosphoglycerate in macrophages during L. pneumophila infection, the timing of which is consistent with a role for SidL in the early stages of the infection cycle. Thus, our study uncovers a mechanism by which an intracellular pathogen uses the chemical modification of a glycolytic intermediate to target central carbon metabolism in the host.
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