CT295 Is Phosphoglucomutase and a Type 3 Secretion Substrate.

Front Cell Infect Microbiol

Institut Pasteur, Université Paris Cité, CNRS UMR3691, Unité de Biologie Cellulaire de l'Infection Microbienne, Paris, France.

Published: July 2022


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Article Abstract

The obligate intracellular bacteria store glycogen in the lumen of the vacuoles in which they grow. Glycogen catabolism generates glucose-1-phosphate (Glc1P), while the bacteria can take up only glucose-6-phosphate (Glc6P). We tested whether the conversion of Glc1P into Glc6P could be catalyzed by a phosphoglucomutase (PGM) of host or bacterial origin. We found no evidence for the presence of the host PGM in the vacuole. Two proteins, CT295 and CT815, are potential PGMs. By reconstituting the reaction using purified proteins, and by complementing PGM deficient fibroblasts, we demonstrated that only CT295 displayed robust PGM activity. Intriguingly, we showed that glycogen accumulation in the lumen of the vacuole of a subset of species (, , ) correlated with the presence, in CT295 orthologs, of a secretion signal recognized by the type three secretion (T3S) machinery of . and do not accumulate glycogen, and their CT295 orthologs lack T3S signals. In conclusion, we established that the conversion of Glc1P into Glc6P was accomplished by a bacterial PGM, through the acquisition of a T3S signal in a "housekeeping" protein. Acquisition of this signal likely contributed to shaping glycogen metabolism within .

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9251005PMC
http://dx.doi.org/10.3389/fcimb.2022.866729DOI Listing

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CT295 Is Phosphoglucomutase and a Type 3 Secretion Substrate.

Front Cell Infect Microbiol

July 2022

Institut Pasteur, Université Paris Cité, CNRS UMR3691, Unité de Biologie Cellulaire de l'Infection Microbienne, Paris, France.

The obligate intracellular bacteria store glycogen in the lumen of the vacuoles in which they grow. Glycogen catabolism generates glucose-1-phosphate (Glc1P), while the bacteria can take up only glucose-6-phosphate (Glc6P). We tested whether the conversion of Glc1P into Glc6P could be catalyzed by a phosphoglucomutase (PGM) of host or bacterial origin.

View Article and Find Full Text PDF